General Physics
Joos, Georg. 1932. Lehrbuch der theoretischen Physik [Theoretical Physics]. Leipzig: Akademische Verlagsgesellschaft.
Landau, Lev D., and Evgeny M. Lifshitz. 1938–1981. The Course of Theoretical Physics. 10 vols.
Sommerfeld, Arnold. 1949–1952. Vorlesungen über Theoretische Physik [Lectures on Theoretical Physics]. 6 vols. Leipzig: Akademische Verlagegesellschaft Becker and Erler, Wiesbaden: Dieterich’sche Verlagsbuchhandlung.
Weizel, Walter. 1949–1950. Lehrbuch der Theoretischen Physik. 2 vols. Berlin: Springer-Verlag.
Supek, Ivan. 1951–1952. Teorijska fizika i struktura materije. 2 vols. Zagreb: Školska knjiga.
Flügge, Siegfried, ed. 1955–1988. Handbuch der Physik. 55 vols. in 78 books. Berlin/Heidelberg/New York: Springer-Verlag.
Feynman, Richard P., Robert B. Leighton, and Matthew L. Sands. 1964. The Feynman Lectures on Physics. 3 vols. Reading, Massachusetts, United States: Addison-Wesley Pub. Co.
Harvard Project Physics. 1964–1970. 5 vols. New York: Holt, Rinehart and Winston.
The Berkeley Physics Course. 1965–1971. 5 vols. New York: McGraw-Hill.
Alonso, Marcelo, and Edward J. Finn. 1967–1968. Fundamental University Physics. 3 vols. Reading, MA: Addison-Wesley.
Landau, L. D., A. I. Akhiezer, and E. M. Lifshitz. 1967. General Physics: Mechanics and Molecular Physics. Translated by J. B. Sykes, A. D. Petford, and C. L. Petford. Oxford: Pergamon Press.
Kompaneyets, A. S. 1972–1975. Theoretical Physics. 2 vols. Moscow: Mir Publishers.
Pauli, Wolfgang. 1973–1977. Pauli Lectures on Physics. 6 vols. Cambridge, MA: MIT Press.
Greiner, Walter. 1975–2003. Theoretical Physics. 13 vols. Berlin: Springer-Verlag.
Savelyev, I. V. 1980. Physics: A General Course. 3 vols. Moscow: Mir Publishers.
Matveev, A. N. 1985–1989. Course of General Physics. 4 vols. Moscow: Mir Publishers.
Bartelmann, Matthias, Björn Feuerbacher, Timm Krüger, Dieter Lüst, Anton Rebhan, and Andreas Wipf. 2015. Theoretische Physik. Heidelberg: Springer Spektrum.
Thorne, Kip S., and Roger D. Blandford. 2017. Modern Classical Physics: Optics, Fluids, Plasmas, Elasticity, Relativity, and Statistical Physics. Princeton, NJ: Princeton University Press.
Resnick, Robert, David Halliday, and Jearl Walker. 2018. Fundamentals of Physics. 11th ed., extended. Hoboken, NJ: Wiley.
Young, Hugh D., and Roger A. Freedman. 2019. University Physics with Modern Physics. 15th ed. San Francisco: Pearson.
Tong, David. 2025. Lectures on Theoretical Physics. 4 vols. Cambridge: Cambridge University Press.
Classical & Fluid Mechanics, Nonlinear Dynamics, Rheology
Huygens, Christiaan. 1673. Horologium Oscillatorium. Paris: F. Muguet.
Newton, Isaac. 1687. Philosophiæ Naturalis Principia Mathematica. London: Jussu Societatis Regiae ac Typis Josephi Streater.
Euler, Leonhard. 1736. Mechanica. St. Petersburg: Imperial Academy Press.
Bernoulli, Daniel. 1738. Hydrodynamica. Argentorati (Strasbourg): Johann Reinhold Dulsecker.
d’Alembert, Jean le Rond. 1743. Traité de dynamique. Paris: Chez la Veuve du Curé.
Lagrange, Joseph-Louis. 1788. Mécanique analytique. Paris: Veuve Desaint.
Fourier, Joseph. 1822. Théorie analytique de la chaleur. Paris: Firmin Didot.
Thomson, William, and Peter Guthrie Tait. 1867. Treatise on Natural Philosophy. Oxford: At the Clarendon Press.
Mach, Ernst. 1883. Die Mechanik in ihrer Entwickelung: Historisch-kritisch dargestellt. Leipzig: Brockhaus.
Routh, Edward John. 1891. The Elementary Part of a Treatise on the Dynamics of a System of Rigid Bodies: Being Part I of a Treatise on the Whole Subject. 5th ed. London: Macmillan.
Routh, Edward John. 1892. The Advanced Part of a Treatise on the Dynamics of a System of Rigid Bodies: Being Part II of a Treatise on the Whole Subject. 5th ed. London: Macmillan.
Hertz, Heinrich. 1894/1899. Die Prinzipien der Mechanik in neuem Zusammenhange dargestellt. / The Principles of Mechanics: Presented in a New Form. Leipzig: Johann Ambrosius Barth / London: Macmillan and Co., Ltd.
Rayleigh, John William Strutt, Baron. 1894–1896. The Theory of Sound. 2nd ed., rev. and enl. 2 vols. London: Macmillan.
Lamb, Horace. 1895/1906/1916/1924/1932. Hydrodynamics. Cambridge: At the University Press.
Whittaker, Edmund T. 1937. A Treatise on the Analytical Dynamics of Particles and Rigid Bodies. 4th ed.; Cambridge reprint 1988. Cambridge: Cambridge University Press.
Courant, Richard, and K. O. Friedrichs. 1948. Supersonic Flow and Shock Waves: A Manual on the Mathematical Theory of Non-Linear Wave Motion. New York: Interscience Publishers.
Lanczos, Cornelius. 1949. The Variational Principles of Mechanics. Toronto: University of Toronto Press.
Goldstein, Herbert. 1950. Classical Mechanics. Cambridge, Massachusetts, United States: Addison-Wesley Press.
Bickley, W. G., and R. E. D. Bishop. 1956. Rayleigh’s Principle and Its Applications to Engineering. Oxford: Oxford University Press.
Leech, John Watson. 1958. Classical Mechanics. London: Methuen & Co.
Chandrasekhar, Subrahmanyan. 1961. Hydrodynamic and Hydromagnetic Stability. Oxford: Clarendon Press.
Zel’dovich, Ya. B., and Yu. P. Raizer. 1963. Физика ударных волн и высокотемпературных гидродинамических явлений [Physics of Shock Waves and High-Temperature Hydrodynamic Phenomena]. Moscow: Fizmatgiz.
Pars, L. A. 1965. A Treatise on Analytical Dynamics. London: Heinemann.
Corben, John, and Bernard Stehle. 1966. Classical Mechanics. Reading, MA: Addison-Wesley.
Batchelor, G. K. 1967. An Introduction to Fluid Dynamics. Cambridge: Cambridge University Press.
Gantmacher, Felix. 1970. Lectures in Analytical Mechanics. Translated by George Yankovsky. Moscow: Mir Publishers.
French, A. P. 1971. Vibrations and Waves. New York: W. W. Norton.
Monin, Andrei S., and A. M. Yaglom. 1971–1975. Statistical Fluid Mechanics: Mechanics of Turbulence. 2 vols. Cambridge, MA: MIT Press.
Symon, Keith R. 1971. Mechanics. 3rd ed. Reading, MA: Addison-Wesley.
Kleppner, Daniel, and Robert J. Kolenkow. 1973/2013. An Introduction to Mechanics. 2nd ed. Cambridge: Cambridge University Press.
Sudarshan, E. C. G., and N. Mukunda. 1974. Classical Dynamics: A Modern Perspective. New York: Wiley.
Abraham, Ralph, and Jerrold E. Marsden. 1978. Foundations of Mechanics. 2nd ed. Reading, MA: Benjamin Cummings.
Fetter, Alexander L., and John Dirk Walecka. 1980. Theoretical Mechanics of Particles and Continua. New York: McGraw-Hill.
Morse, Philip M., and K. Uno Ingard. 1986. Theoretical Acoustics. Princeton, NJ: Princeton University Press.
Strogatz, Steven H. 1994. Nonlinear Dynamics and Chaos: With Applications to Physics, Biology, Chemistry, and Engineering. Reading, MA: Addison-Wesley.
Milne-Thomson, L. M. 1996. Theoretical Hydrodynamics. 5th ed. Mineola, NY: Dover Publications.
Arnold, Vladimir I. 1997. Mathematical Methods of Classical Mechanics. 2nd ed. New York: Springer-Verlag.
Hand, Louis N., and Janet D. Finch. 1998. Analytical Mechanics. Cambridge: Cambridge University Press.
José, Jorge V., and Eugene J. Saletan. 1998. Classical Dynamics: A Contemporary Approach. Cambridge: Cambridge University Press.
Marsden, Jerrold E., and Tudor S. Ratiu. 1999. Introduction to Mechanics and Symmetry: A Basic Exposition of Classical Mechanical Systems. New York: Springer.
Bowden, Frank Philip, and David Tabor. 2001. The Friction and Lubrication of Solids. Oxford Classic Texts in the Physical Sciences. Oxford: Oxford University Press.
Ott, Edward. 2002. Chaos in Dynamical Systems. 2nd ed. Cambridge: Cambridge University Press.
Marion, Jerry B., and Stephen T. Thornton. 2003. Classical Dynamics of Particles and Systems. 5th ed. Belmont, CA: Brooks/Cole.
Kibble, T. W. B., and F. H. Berkshire. 2004. Classical Mechanics. New York: McGraw-Hill.
Taylor, John R. 2005. Classical Mechanics. Sausalito, CA: University Science Books.
Morin, David J. 2008. Introduction to Classical Mechanics: With Problems and Solutions. Cambridge: Cambridge University Press.
Papastavridis, J. G. 2014. Analytical Mechanics: A Comprehensive Treatise on the Dynamics of Constrained Systems. Singapore: World Scientific.
Knauf, Andreas. 2018. Mathematical Physics: Classical Mechanics. Springer.
Electrodynamics, Plasma Physics
Ampère, André-Marie. 1826. Théorie mathématique des phénomènes électro-dynamiques, uniquement déduite de l’expérience. Paris: Bachelier.
Faraday, Michael. 1839–1855. Experimental Researches in Electricity. 3 vols. London: R. and J. E. Taylor.
Maxwell, James Clerk. 1873. A Treatise on Electricity and Magnetism. 2 vols. Oxford: Clarendon Press.
Heaviside, Oliver. 1893–1912. Electromagnetic Theory. 3 vols. London: “The Electrician” Printing and Publishing Company.
Lorentz, Hendrik Antoon. 1909. The Theory of Electrons and Its Applications to the Phenomena of Light and Radiant Heat: A Course of Lectures Delivered in Columbia University, New York, in March and April, 1906. Leipzig: B. G. Teubner.
Stratton, Julius Adams. 1941. Electromagnetic Theory. New York: McGraw-Hill.
Panofsky, Wolfgang K. H., and Melba Phillips. 1955. Classical Electricity and Magnetism. Cambridge, MA: Addison-Wesley.
Spitzer, Lyman, Jr. 1956. Physics of Fully Ionized Gases. New York: Interscience.
Jackson, John David. 1962. Classical Electrodynamics. New York, United States: John Wiley & Sons, Inc.
Schwartz, Melvin. 1972. Principles of Electrodynamics. New York: McGraw-Hill.
Krall, Nicholas A., and Alvin W. Trivelpiece. 1973. Principles of Plasma Physics. New York: McGraw-Hill.
Tamm, Igor E. 1979. Fundamentals of the Theory of Electricity. Moscow: Mir Publishers.
Chen, Francis F. 1984. Introduction to Plasma Physics and Controlled Fusion. 2nd ed. New York: Plenum Press.
Ohanian, Hans C. 1988. Classical Electrodynamics. Boston: Allyn and Bacon.
Griffiths, David J. 1989. Introduction to Electrodynamics. Englewood Cliffs, NJ: Prentice-Hall.
Schwinger, Julian, Lester L. DeRaad Jr., and Kimball A. Milton. 1998. Classical Electrodynamics. Reading, MA: Perseus Books.
Vanderlinde, Jack. 2004. Classical Electromagnetic Theory. 2nd ed. Dordrecht: Springer.
Reitz, John R., Frederick J. Milford, and Robert W. Christy. 2008. Foundations of Electromagnetic Theory. 4th ed. Boston: Addison-Wesley.
Garg, Anupam. 2012. Classical Electromagnetism in a Nutshell. Princeton, NJ: Princeton University Press.
Heald, Mark A., and Jerry B. Marion. 2012. Classical Electromagnetic Radiation. 3rd ed. Mineola, NY: Dover Publications.
Purcell, Edward M., and David J. Morin. 2013. Electricity and Magnetism. 3rd ed. Cambridge: Cambridge University Press.
Zangwill, Andrew. 2013. Modern Electrodynamics. Cambridge: Cambridge University Press.
Franklin, Jerrold. 2017. Classical Electromagnetism. 2nd ed. Mineola, NY: Dover Publications.
Wald, Robert. 2022. Advanced Classical Electromagnetism. Princeton, NJ: Princeton University Press.
Statistical Physics, Thermodynamics, Phase Transitions
Carnot, Sadi. 1824. Réflexions sur la puissance motrice du feu et sur les machines propres à développer cette puissance. Paris: Bachelier.
Clausius, Rudolf. 1867/1879. The Mechanical Theory of Heat, with Its Applications to the Steam-Engine and to the Physical Properties of Bodies. London: J. Van Voorst / London: Macmillan and Co.
Maxwell, James Clerk. 1871/1872. Theory of Heat. London: Longmans, Green, and Co.
Boltzmann, Ludwig. 1896–1898. Vorlesungen über Gastheorie. 2 vols. Leipzig: J. A. Barth.
Gibbs, Josiah Willard. 1902. Elementary Principles in Statistical Mechanics, Developed with Especial Reference to the Rational Foundation of Thermodynamics. New York: Charles Scribner’s Sons.
Planck, Max. 1906. Vorlesungen über die Theorie der Wärmestrahlung. Leipzig: Johann Ambrosius Barth.
Tolman, Richard C. 1938. The Principles of Statistical Mechanics. Oxford: Oxford University Press.
Schrödinger, Erwin. 1946. Statistical Thermodynamics. Cambridge: Cambridge University Press.
Khinchin, A. I. 1949. Mathematical Foundations of Statistical Mechanics. New York: Dover Publications.
Fermi, Enrico. 1956. Thermodynamics. New York: Dover Publications.
Kadanoff, Leo P., and Gordon Baym. 1962. Quantum Statistical Mechanics: Green’s Function Methods in Equilibrium and Nonequilibrium Problems. Frontiers in Physics. New York: W. A. Benjamin.
Kubo, Ryogo, Hiroshi Ichimura, Tsunemaru Usui, and Natsuki Hashitsume. 1965/1990. Statistical Mechanics: An Advanced Course with Problems and Solutions. Amsterdam: North-Holland/Elsevier Science Publishers B.V.
Reif, Frederick. 1965. Fundamentals of Statistical and Thermal Physics. New York: McGraw-Hill.
Katz, Amnon. 1967. Principles of Statistical Mechanics: The Information Theory Approach. San Francisco: W. H. Freeman.
Stanley, H. Eugene. 1971. Introduction to Phase Transitions and Critical Phenomena. Oxford: Oxford University Press.
Terletsky, Yakov P. 1971. Statistical Mechanics. Translated by N. Fröman. Amsterdam: North-Holland.
Domb, Cyril, Melville S. Green, and Joel L. Lebowitz. 1972–2001. Phase Transitions and Critical Phenomena. 20 vols. London: Academic Press.
Feynman, R.P. 1972. Statistical Mechanics: A Set of Lectures. Reading, MA: W.A. Benjamin.
McCoy, Barry M., and Tai Tsun Wu. 1973. The Two-Dimensional Ising Model. Cambridge, MA: Harvard University Press.
Zubarev, D. N. 1974. Nonequilibrium Statistical Thermodynamics. Translated by P. J. Shepherd. Edited by P. Gray and P. T. Landsberg. New York: Consultants Bureau.
Balescu, Radu. 1975. Equilibrium and Nonequilibrium Statistical Mechanics. New York: Wiley-Interscience.
Sears, Francis W., and Gerhard L. Salinger. 1975. Thermodynamics, Kinetic Theory, and Statistical Thermodynamics. 3rd ed. Reading, MA: Addison-Wesley.
Reichl, Linda E. 1980/1998/2009/2016. A Modern Course in Statistical Physics. Wiley.
Efros, A. L. 1982/1986. Physics and Geometry of Disorder: Percolation Theory. Rev. ed. Moscow: Mir Publishers, 1986. (Orig. Russian ed.: Moscow: Nauka, 1982.)
Toda, Morikazu, Ryogo Kubo, and Nobuhiko Saitô. 1983/1992. Statistical Physics I: Equilibrium Statistical Mechanics. Berlin/Heidelberg: Springer-Verlag.
Callen, Herbert B. 1985. Thermodynamics and an Introduction to Thermostatistics. 2nd ed. New York: John Wiley & Sons.
Kubo, Ryogo, Morikazu Toda, and Natsuki Hashitsume. 1985/1991. Statistical Physics II: Nonequilibrium Statistical Mechanics. Berlin/Heidelberg: Springer-Verlag.
Doi, Masao, and Sam F. Edwards. 1986. The Theory of Polymer Dynamics. Oxford: Oxford University Press.
Bratteli, Ola, and Derek W. Robinson. 1987–1997. Operator Algebras and Quantum Statistical Mechanics. 2 vols. 2nd ed. New York: Springer.
Chandler, David. 1987. Introduction to Modern Statistical Mechanics. Oxford: Oxford University Press.
Huang, Kerson. 1987. Statistical Mechanics. 2nd ed. New York: John Wiley & Sons.
Mézard, Marc, Giorgio Parisi, and M. A. Virasoro. 1987. Spin Glass Theory and Beyond. World Scientific Lecture Notes in Physics 9. Singapore: World Scientific.
Goldenfeld, Nigel. 1992. Lectures on Phase Transitions and the Renormalization Group. Reading, MA: Addison-Wesley.
Mattuck, Richard D. 1992. A Guide to Feynman Diagrams in the Many-Body Problem. 2nd ed. New York: Dover Publications.
Le Bellac, Michel. 1996. Thermal Field Theory. Cambridge: Cambridge University Press.
Pathria, R. K. 1996. Statistical Mechanics. Oxford: Butterworth-Heinemann.
Kittel, Charles, and Herbert Kroemer. 1998. Thermal Physics. New York: W. H. Freeman.
Meakin, Paul. 1998. Fractals, Scaling and Growth Far from Equilibrium. Cambridge: Cambridge University Press.
Kadanoff, Leo P. 2000. Statistical Physics: Statics, Dynamics and Renormalization. Singapore: World Scientific Publishing.
Mahan, Gerald D. 2000. Many-Particle Physics. 3rd ed. New York: Springer.
Schroeder, Daniel V. 2000. An Introduction to Thermal Physics. San Francisco: Addison-Wesley.
Zwanzig, Robert. 2001. Nonequilibrium Statistical Mechanics. Oxford: Oxford University Press.
Harris, Stewart. 2004. An Introduction to the Theory of the Boltzmann Equation. Mineola, NY: Dover Publications.
Schwabl, Franz. 2006. Statistical Mechanics. 2nd ed. Berlin: Springer.
Sethna, James P. 2006. Statistical Mechanics: Entropy, Order Parameters, and Complexity. Oxford: Oxford University Press.
Balian, Roger. 2007. From Microphysics to Macrophysics: Methods and Applications of Statistical Physics. 2 vols. Berlin: Springer.
Kardar, Mehran. 2007. Statistical Physics of Particles. Cambridge: Cambridge University Press.
Kardar, Mehran. 2007. Statistical Physics of Fields. Cambridge: Cambridge University Press.
Rabe, Karin M., Charles H. Ahn, and Jean-Marc Triscone, eds. 2007. Physics of Ferroelectrics: A Modern Perspective. Berlin: Springer.
Coleman, Piers. 2015. Introduction to Many-Body Physics. Cambridge: Cambridge University Press.
Bertin, Eric. 2017. Statistical Physics of Complex Systems: A Concise Introduction. Cham, Switzerland: Springer.
Quantum Mechanics
Born, Max. 1926. Vorlesungen über Atommechanik. Erster Band. Berlin: Springer.
Dirac, Paul Adrien Maurice. 1930. The Principles of Quantum Mechanics. Oxford: Clarendon Press.
Heisenberg, Werner. 1930. Die physikalischen Prinzipien der Quantentheorie. Leipzig: S. Hirzel.
Von Neumann, John. 1932. Mathematische Grundlagen der Quantenmechanik [Mathematical Foundations of Quantum Mechanics]. Berlin: Springer.
Bohr, Niels. 1934. Atomic Theory and the Description of Nature. Cambridge: Cambridge University Press.
Heitler, Walter. 1936. The Quantum Theory of Radiation. Oxford: Clarendon Press.
Bohm, David. 1951. Quantum Theory. New York: Prentice-Hall.
Kramers, Hendrik Anthony. 1957. Quantum Mechanics. Translated by Dirk ter Haar. Amsterdam: North-Holland.
Messiah, Albert. 1959–1961. Quantum Mechanics. 2 vols. Amsterdam: North-Holland.
Feynman, Richard P., and A. R. Hibbs. 1965. Quantum Mechanics and Path Integrals. New York: McGraw-Hill.
Dirac, Paul Adrien Maurice. 1964. Lectures on Quantum Mechanics. New York: Belfer Graduate School of Science, Yeshiva University.
Sakurai, Jun John. 1967. Advanced Quantum Mechanics. Reading, Massachusetts: Addison-Wesley.
Jauch, Josef M. 1968. Foundations of Quantum Mechanics. Reading, MA: Addison-Wesley.
Schiff, Leonard I. 1968. Quantum Mechanics. 3rd ed. New York: McGraw-Hill.
Schwinger, Julian. 1970. Quantum Kinematics and Dynamics. Frontiers in Physics. Reading, MA: W. A. Benjamin.
Fetter, Alexander L., and John Dirk Walecka. 1971. Quantum Theory of Many-Particle Systems. New York: McGraw-Hill.
McGervey, John D. 1971. Quantum Mechanics: Concepts and Applications. New York: Academic Press.
Chadan, Khosrow, and Pierre C. Sabatier. 1977. Inverse Problems in Quantum Scattering Theory. New York: Springer-Verlag.
Cohen-Tannoudji, Claude, Bernard Diu, and Franck Laloë. 1977. Quantum Mechanics. 2 vols. New York: Wiley.
French, A. P., and Edwin F. Taylor. 1978. An Introduction to Quantum Physics. New York: W. W. Norton.
Liboff, Richard L. 1980. Introductory Quantum Mechanics. Reading, MA: Addison-Wesley.
Shankar, Ramamurti. 1980/1994. Principles of Quantum Mechanics. New York: Plenum Press/New York: Springer.
Eisberg, Robert, and Robert Resnick. 1985. Quantum Physics of Atoms, Molecules, Solids, Nuclei, and Particles. 2nd ed. New York: John Wiley & Sons.
Glimm, James, and Arthur Jaffe. 1987. Quantum Physics: A Functional Integral Point of View. New York: Springer.
Prange, R.E., and S.M. Girvin, eds. 1987. The Quantum Hall Effect. New York: Springer-Verlag.
Negele, John W., and Henri Orland. 1988. Quantum Many-Particle Systems. Redwood City, CA: Addison-Wesley.
Peebles, P. J. E. 1992. Quantum Mechanics. Princeton, NJ: Princeton University Press.
Holland, P. R. 1993. The Quantum Theory of Motion: An Account of the de Broglie-Bohm Causal Interpretation of Quantum Mechanics. Cambridge: Cambridge University Press.
Peres, Asher. 1993. Quantum Theory: Concepts and Methods. Dordrecht: Kluwer Academic Publishers.
Sakurai, J. J. 1994. Modern Quantum Mechanics. Reading, MA: Addison-Wesley.
Fermi, Enrico. 1995. Notes on Quantum Mechanics. 2nd ed. Chicago: University of Chicago Press.
Griffiths, David J. 1995. Introduction to Quantum Mechanics. Upper Saddle River, NJ: Prentice Hall.
Haag, Rudolf. 1996. Local Quantum Physics: Fields, Particles, Algebras. 2nd ed. Berlin: Springer-Verlag.
Ballentine, Leslie E. 1998. Quantum Mechanics: A Modern Development. Singapore: World Scientific.
Merzbacher, Eugen. 1998. Quantum Mechanics. 3rd ed. New York: Wiley.
Loudon, Rodney. 2000. The Quantum Theory of Light. 3rd ed. Oxford: Oxford University Press.
Townsend, John S. 2000. A Modern Approach to Quantum Mechanics. Sausalito, CA: University Science Books.
Breuer, Heinz-Peter, and Francesco Petruccione. 2002. The Theory of Open Quantum Systems. Oxford: Oxford University Press.
Levin, F. S. 2002. An Introduction to Quantum Theory. Cambridge: Cambridge University Press.
Gasiorowicz, Stephen. 2003. Quantum Physics. 3rd ed. New York: John Wiley & Sons.
Dyson, Freeman. 2006. 1951 Lectures on Advanced Quantum Mechanics Second Edition. https://arxiv.org/abs/quant-ph/0608140
Schwabl, Franz. 2007. Quantum Mechanics. 4th ed. Berlin: Springer.
Varadarajan, V. S. 2007. Geometry of Quantum Theory. 2nd ed. New York: Springer-Verlag.
Schwabl, Franz. 2008. Advanced Quantum Mechanics. 2nd ed. Berlin: Springer.
Zettili, Nouredine. 2009. Quantum Mechanics: Concepts and Applications. 2nd ed. Chichester, UK: Wiley.
Sachdev, Subir. 2011. Quantum Phase Transitions. 2nd ed. Cambridge: Cambridge University Press.
Weinberg, Steven. 2013. Lectures on Quantum Mechanics. Cambridge: Cambridge University Press.
Baym, Gordon. 2019. Lectures on Quantum Mechanics. Boca Raton, FL: CRC Press.
Relativity, Gravitation, Cosmology
Lorentz, Hendrik A. 1895. Versuch einer Theorie der elektrischen und optischen Erscheinungen in bewegten Körpern. Leiden: E. J. Brill.
Einstein, Albert. 1920. Relativity: The Special and General Theory. Translated by Robert W. Lawson. New York: Henry Holt and Company.
Pauli, Wolfgang. 1921/1958. Theory of Relativity. Translated by G. Field. London: Pergamon Press.
Einstein, Albert. 1922. The Meaning of Relativity: Four Lectures Delivered at Princeton University, May 1921. London: Methuen and Company / Princeton, NJ: Princeton University Press.
Weyl, Hermann. 1922. Raum, Zeit, Materie: Vorlesungen über allgemeine Relativitätstheorie. Berlin: Springer.
Eddington, Arthur S. 1923. The Mathematical Theory of Relativity. Cambridge: Cambridge University Press.
Lorentz, H. A., Albert Einstein, Hermann Minkowski, and Hermann Weyl. 1923. The Principle of Relativity: A Collection of Original Memoirs on the Special and General Theory of Relativity. New York: Dover.
Tolman, Richard C. 1934. Relativity, Thermodynamics, and Cosmology. Oxford: Clarendon Press.
Synge, John Lighton. 1956. Relativity: The Special Theory. Amsterdam: North-Holland Publishing Company.
Synge, John Lighton. 1957. The Relativistic Gas. Amsterdam: North-Holland Publishing Company.
Fock, Vladimir A. 1959. Theory of Space, Time and Gravitation. Translated by N. Kemmer. 2nd rev. ed. New York: Pergamon Press.
Synge, John Lighton. 1960. Relativity: The General Theory. Amsterdam: North-Holland Publishing Company.
Peebles, P. J. E. 1971. Physical Cosmology. Princeton, NJ: Princeton University Press.
Møller, Christian. 1972. The Theory of Relativity. 2nd ed. Oxford: Clarendon Press.
Weinberg, Steven. 1972. Gravitation and Cosmology: Principles and Applications of the General Theory of Relativity. New York: Wiley.
Hawking, Stephen W., and G. F. R. Ellis. 1973. The Large Scale Structure of Space-Time. Cambridge: Cambridge University Press.
Misner, Charles W., Kip S. Thorne, and John Archibald Wheeler. 1973. Gravitation. New York, United States: W.H. Freeman and Company.
Papapetrou, Achille. 1974. Lectures on General Relativity. Dordrecht: Reidel.
Adler, Ronald, Maurice Bazin, and Menahem Schiffer. 1975. Introduction to General Relativity. 2nd ed. New York: McGraw-Hill.
Dirac, Paul Adrien Maurice. 1975. General Theory of Relativity. New York: John Wiley & Sons.
de Groot, Sybren R., Willem A. van Leeuwen, and Christianus G. van Weert. 1980. Relativistic Kinetic Theory: Principles and Applications. Amsterdam: North-Holland Publishing.
Peebles, P. J. E. 1980. Large-Scale Structure of the Universe. Princeton, NJ: Princeton University Press.
Rindler, Wolfgang. 1982/1991. Introduction to Special Relativity. Oxford: OUP.
Vladimirov, Yu. S., N. V. Mitskievich, and J. Horský. 1984/1987. Prostranstvo, vremya, gravitatsiya. [Space, Time, Gravitation.] Translated from the Russian by A. G. Zilberman. Edited by F. I. Fedorov. Moscow: Mir Publishers, 1987. (Orig. Russian ed.: Moscow: Nauka, 1984.)
Wald, Robert M. 1984. General Relativity. Chicago: University of Chicago Press.
Hawking, Stephen W., and Werner Israel, eds. 1987. Three Hundred Years of Gravitation. Cambridge: Cambridge University Press.
Kolb, Edward W., and Michael S. Turner. 1990. The Early Universe. Frontiers in Physics. Reading, MA: Addison-Wesley.
Chandrasekhar, Subrahmanyan. 1992. The Mathematical Theory of Black Holes. Oxford: Oxford University Press.
d’Inverno, Ray. 1992/2022. Introducing Einstein’s Relativity: A Deeper Understanding. Oxford: OUP.
Taylor, Edwin F., and John Archibald Wheeler. 1992. Spacetime Physics: Introduction to Special Relativity. New York: W. H. Freeman.
Peebles, P. J. E. 1993. Principles of Physical Cosmology. Princeton, NJ: Princeton University Press.
Will, Clifford M. 1993. Theory and Experiment in Gravitational Physics. Cambridge: Cambridge University Press.
Feynman, Richard P., Fernando B. Morinigo, and William G. Wagner. 1995. Feynman Lectures on Gravitation. Edited by Brian Hatfield. Reading, MA: Addison-Wesley.
Schutz, Bernard F. 1998. A First Course in General Relativity. Cambridge: Cambridge University Press.
Peacock, John A. 1999. Cosmological Physics. Cambridge: Cambridge University Press.
Liddle, Andrew R., and David H. Lyth. 2000. Cosmological Inflation and Large-Scale Structure. Cambridge: Cambridge University Press.
Taylor, Edwin F., and John Archibald Wheeler. 2000. Exploring Black Holes: Introduction to General Relativity. San Francisco: Addison-Wesley.
Vilenkin, Alexander, and E. P. S. Shellard. 2000. Cosmic Strings and Other Topological Defects. Cambridge Monographs on Mathematical Physics. Cambridge: Cambridge University Press.
Rindler, Wolfgang. 2001/2006. Relativity: Special, General, and Cosmological. Oxford: Oxford University Press.
Cercignani, Carlo, and Gilberto M. Kremer. 2002. The Relativistic Boltzmann Equation: Theory and Applications. Progress in Mathematical Physics, vol. 22. Basel: Birkhäuser.
Ryden, Barbara. 2002/2016/2017. Introduction to Cosmology. (Addison-Wesley / Cambridge)
Dodelson, Scott. 2003. Modern Cosmology. New York: Academic Press.
Hartle, James B. 2003. Gravity: An Introduction to Einstein’s General Relativity. San Francisco: Addison-Wesley.
Kramer, Dietrich, Hans Stephani, Eberhard Herlt, and Mark MacCallum. 2003. Exact Solutions of Einstein’s Field Equations. 2nd ed. Cambridge: Cambridge University Press.
Carroll, Sean M. 2004. Spacetime and Geometry: An Introduction to General Relativity. San Francisco: Addison-Wesley.
Poisson, Eric. 2004. A Relativist’s Toolkit: The Mathematics of Black-Hole Mechanics. Cambridge: Cambridge University Press.
Mukhanov, Viatcheslav F. 2005. Physical Foundations of Cosmology. Cambridge: Cambridge University Press.
Maggiore, Michele. 2007–2018. Gravitational Waves. 2 vols. Oxford: Oxford University Press.
Thiemann, Thomas. 2007. Modern Canonical Quantum General Relativity. Cambridge Monographs on Mathematical Physics. Cambridge: Cambridge University Press.
Weinberg, Steven. 2008. Cosmology. Oxford: Oxford University Press.
Choquet-Bruhat, Yvonne. 2009. General Relativity and the Einstein Equations. Oxford: Oxford University Press.
Holm, Darryl D., Tanya Schmah, and Cristina Stoica. 2009. Geometric Mechanics and Symmetry: From Finite to Infinite Dimensions. Oxford: Oxford University Press.
Peebles, P. James E., Lyman A. Page Jr., and R. Bruce Partridge, eds. 2009. Finding the Big Bang. Cambridge: Cambridge University Press.
Baumgarte, Thomas W., and Stuart L. Shapiro. 2010. Numerical Relativity: Solving Einstein’s Equations on the Computer. Cambridge: Cambridge University Press.
Padmanabhan, Thanu. 2010. Gravitation: Foundations and Frontiers. Cambridge: Cambridge University Press.
Tsamparlis, Michael. 2010. Special Relativity: An Introduction with 200 Problems and Solutions. Berlin: Springer-Verlag.
Freedman, Daniel Z., and Antoine van Proeyen. 2012. Supergravity. Cambridge: Cambridge University Press.
Ohanian, Hans C., and Remo Ruffini. 2013. Gravitation and Spacetime. 3rd ed. Cambridge: Cambridge University Press.
Zee, Anthony. 2013. Einstein Gravity in a Nutshell. Princeton, NJ: Princeton University Press.
Choquet-Bruhat, Yvonne. 2014. Introduction to General Relativity, Black Holes, and Cosmology. Oxford: Oxford University Press.
Durrer, Ruth. 2020. The Cosmic Microwave Background. Cambridge: Cambridge University Press.
Blau, Matthias. Lecture Notes on General Relativity. Bern: University of Bern. http://blau.itp.unibe.ch/GRLecturenotes.html.
Classical & Quantum Field Theory, Strong Interaction, Strings
Wentzel, Gregor. 1949. Quantum Theory of Fields. New York: Interscience Publishers.
Bogoliubov, Nikolai Nicolaevich, and Dimitrii Vasil’evich Shirkov. 1957. Введение в теорию квантованных полей. Moscow: Nauka.
Feynman, Richard P. 1961. Quantum Electrodynamics: A Lecture Note and Reprint Volume. New York: W. A. Benjamin.
Feynman, Richard P. 1961. The Theory of Fundamental Processes: A Lecture Note Volume. New York: W. A. Benjamin.
Schweber, Silvan S. 1961. An Introduction to Relativistic Quantum Field Theory. New York: Harper & Row.
Abrikosov, Alexei A., Lev P. Gorkov, and Igor E. Dzyaloshinskii. 1963. Methods of Quantum Field Theory in Statistical Physics. Englewood Cliffs, NJ: Prentice-Hall.
Bjorken, James D., and Sidney D. Drell. 1964. Relativistic Quantum Mechanics. New York: McGraw-Hill.
Streater, R. F., and A. S. Wightman. 1964/2000. PCT, Spin and Statistics, and All That. New York: W. A. Benjamin/Princeton: Princeton University Press.
Bjorken, James D., and Sidney D. Drell. 1965. Relativistic Quantum Fields. New York: McGraw-Hill.
DeWitt, Bryce S. 1965. Dynamical Theory of Groups and Fields. Documents on Modern Physics. New York: Gordon and Breach.
Dirac, Paul Adrien Maurice. 1966. Lectures on Quantum Field Theory. New York: Belfer Graduate School of Science, Yeshiva University.
Schwinger, Julian. 1970–1989. Particles, Sources, and Fields. 3 vols. Boulder, CO: Westview Press.
Polyakov, A. M. 1974. “Particle Spectrum in the Quantum Field Theory.” JETP Letters 20:194–97.
Soper, Davison E. 1976. Classical Field Theory. Mineola, NY: Dover Publications.
Nash, Charles. 1978. Relativistic Quantum Fields. London: Academic Press.
Atiyah, Michael F. 1979. Geometry of Yang–Mills Fields. Pisa: Scuola Normale Superiore.
Itzykson, Claude, and Jean-Bernard Zuber. 1980. Quantum Field Theory. New York: McGraw-Hill.
Lee, Tsung-Dao. 1981. Particle Physics and Introduction to Field Theory. New York: Harwood Academic Press.
Ramond, Pierre. 1981. Field Theory: A Modern Primer. Reading, Massachusetts: Benjamin-Cummings Publishing Company.
Birrell, N. D., and P. C. W. Davies. 1982. Quantum Fields in Curved Space. Cambridge: Cambridge University Press.
Rajaraman, R. 1982. Solitons and Instantons: An Introduction to Solitons and Instantons in Quantum Field Theory. Amsterdam: North-Holland.
Amit, Daniel J., and Victor Martin-Mayor. 1978/1984/2005. Field Theory, the Renormalization Group, and Critical Phenomena. 1st ed. McGraw-Hill International Book Co/ 2nd 3rd ed. Singapore: World Scientific.
Cheng, Ta-Pei, and Ling-Fong Li. 1984. Gauge Theory of Elementary Particle Physics. Oxford: Clarendon Press.
Collins, John C. 1984. Renormalization: An Introduction to Renormalization, The Renormalization Group, and the Operator Product Expansion. Cambridge: Cambridge University Press.
Wangsness, Roald K. 1986. Electromagnetic Fields. 2nd ed. New York: Wiley.
Göckeler, Michael, and Thomas Schücker. 1987. Differential Geometry, Gauge Theories, and Gravity. Cambridge: Cambridge University Press.
Green, Michael B., John H. Schwarz, and Edward Witten. 1987. Superstring Theory. 2 vols. Cambridge: Cambridge University Press.
Polyakov, Alexander M. 1987. Gauge Fields and Strings. New York: Harwood Academic Publishers.
Parisi, Giorgio. 1988. Statistical Field Theory. Reading, MA: Addison-Wesley Publishing Company.
Aitchison, Ian J. R., and Anthony J. G. Hey. 1989. Gauge Theories in Particle Physics. Bristol: Institute of Physics Publishing.
Bogoliubov, Nikolay N., Anatoliy A. Logunov, A. I. Oksak, and I. T. Todorov. 1989. General Principles of Quantum Field Theory. Dordrecht: Kluwer Academic.
Cohen-Tannoudji, Claude, Jacques Dupont-Roc, and Gilbert Grynberg. 1989. Photons and Atoms: Introduction to Quantum Electrodynamics. New York: John Wiley & Sons.
Itzykson, Claude, and Jean-Michel Drouffe. 1989. Statistical Field Theory. 2 vols. Cambridge: Cambridge University Press.
West, Peter. 1990. Introduction to Supersymmetry and Supergravity. 2nd ed. Singapore: World Scientific.
Collin, Robert E. 1991. Field Theory of Guided Waves. 2nd ed. New York: IEEE Press.
Faddeev, Ludvig D., and Andrei A. Slavnov. 1991. Gauge Fields: Introduction to Quantum Theory. Reading, MA: Addison-Wesley.
Brown, Lowell S. 1992. Quantum Field Theory. Cambridge: Cambridge University Press.
Hatfield, Brian. 1992. Quantum Field Theory of Point Particles and Strings. Addison-Wesley.
Henneaux, Marc, and Claudio Teitelboim. 1992. Quantization of Gauge Systems. Princeton, NJ: Princeton University Press.
Nash, Charles. 1992. Differential Topology and Quantum Field Theory. New York: Academic Press.
Wess, Julius, and Jonathan Bagger. 1992. Supersymmetry and Supergravity. Princeton, NJ: Princeton University Press.
Bailin, David, and Alexander Love. 1993. Introduction to Gauge Field Theory. Rev. ed. Bristol, UK: IOP Publishing.
Sterman, George. 1993. An Introduction to Quantum Field Theory. Cambridge: Cambridge University Press.
Baez, John, and Javier P. Muniain. 1994. Gauge Fields, Knots and Gravity. Singapore: World Scientific.
Milonni, Peter W. 1994. The Quantum Vacuum: An Introduction to Quantum Electrodynamics. Boston: Academic Press.
Wald, Robert M. 1994. Quantum Field Theory in Curved Spacetime and Black Hole Thermodynamics. Chicago: University of Chicago Press.
Weinberg, Steven. 1995. The Quantum Theory of Fields. 3 vols. Cambridge: Cambridge University Press.
Peskin, Michael E., and Daniel V. Schroeder. 1995. An Introduction to Quantum Field Theory. Reading, MA: Perseus Books.
Cardy, John. 1996. Scaling and Renormalization in Statistical Physics. Cambridge: Cambridge University Press.
Ryder, Lewis H. 1996. Quantum Field Theory. Cambridge: Cambridge University Press.
Di Francesco, Philippe, Pierre Mathieu, and David Sénéchal. 1997. Conformal Field Theory. New York: Springer.
Quigg, Chris. 1997. Gauge Theories of the Strong, Weak and Electromagnetic Interactions. Reading, MA: Perseus Books.
Polchinski, Joseph. 1998. String Theory. 2 vols. Cambridge: Cambridge University Press.
Deligne, Pierre, Pavel Etingof, Daniel S. Freed, Lisa C. Jeffrey, David Kazhdan, John W. Morgan, David R. Morrison, and Edward Witten, eds. 1999. Quantum Fields and Strings: A Course for Mathematicians. 2 vols. Providence, RI: American Mathematical Society.
Gross, Franz. 1999. Relativistic Quantum Mechanics and Field Theory. New York: Wiley.
Nagaosa, Naoto. 1999. Quantum Field Theory in Strongly Correlated Electronic Systems. Berlin: Springer.
Ticciati, Robin. 1999. Quantum Field Theory for Mathematicians. Cambridge: Cambridge University Press.
Stone, Michael. 2000. The Physics of Quantum Fields. New York: Springer.
Zinn-Justin, Jean. 2002. Quantum Field Theory and Critical Phenomena. 4th ed. Oxford: Oxford University Press.
DeWitt, Bryce. 2003. The Global Approach to Quantum Field Theory. 2 vols. International Series of Monographs on Physics. Oxford: Oxford University Press.
Johnson, Clifford V. 2003. D-Branes. Cambridge: Cambridge University Press.
Tsvelik, Alexei M. 2003. Quantum Field Theory in Condensed Matter Physics. Cambridge: Cambridge University Press.
Zee, Anthony. 2003. Quantum Field Theory in a Nutshell. Princeton, NJ: Princeton University Press.
Narison, Stephan. 2004. QCD as a Theory of Hadrons: From Partons to Confinement. Cambridge: Cambridge University Press.
Rovelli, Carlo. 2004. Quantum Gravity. Cambridge: Cambridge University Press.
Truesdell, Clifford A., and Walter Noll. 2004. The Non-Linear Field Theories of Mechanics. 3rd ed. Edited by Stuart S. Antman. Berlin: Springer-Verlag.
Zwiebach, Barton. 2004. A First Course in String Theory. Cambridge: Cambridge University Press.
Wen, Xiao-Gang. 2004. Quantum Field Theory of Many-Body Systems: From the Origin of Sound to an Origin of Light and Electrons. Oxford: Oxford University Press.
Cheng, Ta-Pei. 2005. Relativity, Gravitation, and Cosmology: A Basic Introduction. Oxford: Oxford University Press.
Labastida, Jose M. F., and Marcos Marino. 2005. Topological Quantum Field Theory and Four Manifolds. Dordrecht: Springer.
Kapusta, Joseph I., and Charles Gale. 2006. Finite-Temperature Field Theory: Principles and Applications. 2nd ed. Cambridge: Cambridge University Press.
Zeidler, Eberhard. 2006/2009. Quantum Field Theory I: Basics in Mathematics and Physics: A Bridge between Mathematicians and Physicists. Berlin: Springer.
Becker, Katrin, Melanie Becker, and John H. Schwarz. 2007. String Theory and M-Theory: A Modern Introduction. Cambridge: Cambridge University Press.
Dine, Michael. 2007. Supersymmetry and String Theory: Beyond the Standard Model. Cambridge: Cambridge University Press.
Kiritsis, Elias. 2007. String Theory in a Nutshell. Princeton: Princeton University Press.
Mukhanov, Viatcheslav, and Sergei Winitzki. 2007. Introduction to Quantum Effects in Gravity. Cambridge: Cambridge University Press.
Srednicki, Mark. 2007. Quantum Field Theory. Cambridge: Cambridge University Press.
Tong, David. 2007. Lectures on Quantum Field Theory. University of Cambridge. http://www.damtp.cam.ac.uk/user/tong/qft.html.
Banks, Thomas. 2008. Modern Quantum Field Theory: A Concise Introduction. Cambridge: Cambridge University Press.
Das, Ashok. 2008. Lectures on Quantum Field Theory. World Scientific.
Folland, Gerald B. 2008. Quantum Field Theory: A Tourist Guide for Mathematicians. Mathematical Surveys and Monographs 149. Providence, RI: American Mathematical Society.
Maggiore, Michele. 2008. A Modern Introduction to Quantum Field Theory. Oxford: Oxford University Press.
McMahon, David. 2008. String Theory Demystified. New York: McGraw-Hill.
Zeidler, Eberhard. 2008. Quantum Field Theory II: Quantum Electrodynamics: A Bridge between Mathematicians and Physicists. Berlin: Springer-Verlag.
Szabo, Richard J. 2010. An Introduction to String Theory and D-Brane Dynamics: With Problems and Solutions. 2nd ed. London: Imperial College Press.
Zeidler, Eberhard. 2011. Quantum Field Theory III: Gauge Theory: A Bridge between Mathematicians and Physicists. Berlin: Springer-Verlag.
Blumenhagen, Ralph, and Erik Plauschinn. 2009. Introduction to Conformal Field Theory: With Applications to String Theory. Lecture Notes in Physics. Berlin: Springer.
Gattringer, Christof, and Christian B. Lang. 2010. Quantum Chromodynamics on the Lattice: An Introductory Presentation. Berlin: Springer.
Huang, Kerson. 2010. Quantum Field Theory: From Operators to Path Integrals. 2nd ed. Weinheim, Germany: Wiley-VCH.
Labelle, Patrick. 2010. Supersymmetry Demystified. New York: McGraw-Hill.
Mandl, Franz, and Graham Shaw. 2010. Quantum Field Theory. 2nd ed. Chichester, UK: Wiley.
Mussardo, Giuseppe. 2010. Statistical Field Theory: An Introduction to Exactly Solved Models in Statistical Physics. Oxford: Oxford University Press.
Muta, Taizo. 2010. Foundations of Quantum Chromodynamics: An Introduction to Perturbative Methods in Gauge Theories. 3rd ed. Singapore: World Scientific.
Dimock, Jonathan. 2011. Quantum Mechanics and Quantum Field Theory: A Mathematical Primer. Cambridge: Cambridge University Press.
Kamenev, Alex. 2011. Field Theory of Non-Equilibrium Systems. Cambridge: Cambridge University Press.
Duncan, Anthony. 2012. The Conceptual Framework of Quantum Field Theory. Oxford: Oxford University Press.
Kiefer, Claus. 2012. Quantum Gravity. 3rd ed. Oxford: Oxford University Press.
Rothe, Heinz J. 2012. Lattice Gauge Theories: An Introduction. 4th ed. Singapore: World Scientific.
Tong, David. 2012. Lectures on String Theory. https://arxiv.org/abs/0908.0333
West, Peter. 2012. Introduction to Strings and Branes. Cambridge: Cambridge University Press.
Fradkin, Eduardo. 2013. Quantum Field Theory: An Integrated Approach. Princeton: Princeton University Press.
Klauber, Robert D. 2013. Student Friendly Quantum Field Theory: Volume 1: Basic Principles and Quantum Electrodynamics. Sandtrove Press.
Klauber, Robert D. 2013. Solutions to Problems for Student Friendly Quantum Field Theory: Volume 1. Sandtrove Press.
Klauber, Robert D. 2013. Student Friendly Quantum Field Theory: Volume 2: The Standard Model. Sandtrove Press.
Klauber, Robert D. 2013. Solutions to Problems for Student Friendly Quantum Field Theory: Volume 2: The Standard Model. Sandtrove Press.
Henn, Johannes M., and Jan C. Plefka. 2014. Scattering Amplitudes in Gauge Theories. Berlin: Springer-Verlag.
Schwartz, Matthew D. 2014. Quantum Field Theory and the Standard Model. Cambridge: Cambridge University Press.
Ammon, Martin, and Johanna Erdmenger. 2015. Gauge/Gravity Duality: Foundations and Applications. Cambridge: Cambridge University Press.
Elvang, Henriette, and Yu-Tin Huang. 2015. Scattering Amplitudes in Gauge Theory and Gravity. Cambridge: Cambridge University Press.
Laine, Mikko, and Aleksi Vuorinen. 2016. Basics of Thermal Field Theory: A Tutorial on Perturbative Computations. Lecture Notes in Physics, vol. 925. Cham, Switzerland: Springer International Publishing.
Shankar, Ramamurti. 2017. Quantum Field Theory and Condensed Matter: An Introduction. Oxford: Oxford University Press.
Witten, Edward. 2017. Notes on Some Entanglement Properties of Quantum Field Theory. Princeton, NJ: Institute for Advanced Study.
Coleman, Sidney. 2018. Lectures of Sidney Coleman on Quantum Field Theory. Singapore: World Scientific. https://arxiv.org/abs/1110.5013
Hartnoll, Sean A., Andrew Lucas, and Subir Sachdev. 2018. Holographic Quantum Matter. Cambridge, MA: MIT Press.
Burgess, C. P. 2020. Introduction to Effective Field Theory: Thinking Effectively about Hierarchies of Scale. Cambridge: Cambridge University Press.
Talagrand, Michel. 2022. What Is a Quantum Field Theory?. Cambridge: Cambridge University Press.
Bietenholz, W., U.-J. Wiese. 2025. Uncovering Quantum Field Theory and the Standard Model: From Fundamental Concepts to Dynamical Mechanisms. Cambridge University Press.
Carroll, Sean. 2025. Quanta and Fields. Princeton University Press.
Young, James. 2025. Quantum Field Theory Step by Step. Publisher pending.
Particle Physics, High-Energy Physics, Standard Model
Rose, Morris Edgar. 1961. Relativistic Electron Theory. New York: Wiley.
Gell-Mann, Murray, and Yuval Ne’eman, eds. 1964. The Eightfold Way: A Review, with a Collection of Reprints. New York: W. A. Benjamin.
Okun, Lev B. 1982. Leptons and Quarks. Amsterdam: North-Holland.
Halzen, Francis, and Alan D. Martin. 1984. Quarks and Leptons: An Introductory Course in Modern Particle Physics. New York: Wiley.
Griffiths, David J. 1987. Introduction to Elementary Particles. New York: Wiley.
Martin, Brian R., and Graham Shaw. 1997. Particle Physics. New York: Wiley.
Perkins, Donald H. 2000. Introduction to High Energy Physics. 4th ed. Cambridge: Cambridge University Press.
Leader, Elliot. 2001. Spin in Particle Physics. Cambridge: Cambridge University Press.
Devenish, Robin, and Amanda Cooper-Sarkar. 2004. Deep Inelastic Scattering. Oxford: Oxford University Press.
Morii, Toshiyuki, Chong-Sa Lim, and Shankar Nath Mukherjee. 2004. The Physics of the Standard Model and Beyond. Singapore: World Scientific.
Cottingham, W. Noel, and Derek A. Greenwood. 2007. An Introduction to the Standard Model of Particle Physics. 2nd ed. Cambridge: Cambridge University Press.
Langacker, Paul. 2009. The Standard Model and Beyond. Boca Raton, FL: CRC Press.
Ibáñez, Luis E., and Ángel M. Uranga. 2012. String Theory and Particle Physics: An Introduction to String Phenomenology. Cambridge: Cambridge University Press.
Thomson, Mark. 2013. Modern Particle Physics. Cambridge: Cambridge University Press.
Bettini, Alessandro. 2014. Introduction to Elementary Particle Physics. 2nd ed. Cambridge: Cambridge University Press.
Donoghue, John F., Eugene Golowich, and Barry R. Holstein. 2014. Dynamics of the Standard Model. 2nd ed. Cambridge Monographs on Particle Physics, Nuclear Physics and Cosmology. Cambridge: Cambridge University Press.
Pal, Palash B. 2014. An Introductory Course of Particle Physics. New Delhi: CRC Press.
Optics, Lasers, Atomic Physics
Huygens, Christiaan. 1690. Traité de la lumière. Leiden: Pierre van der Aa.
Newton, Isaac. 1704. Opticks: Or, A Treatise of the Reflections, Refractions, Inflections & Colours of Light. London: Sam. Smith and Benj. Walford.
Sommerfeld, Arnold. 1919. Atombau und Spektrallinien. Braunschweig: Vieweg & Sohn.
Condon, E.U., and G.H. Shortley. 1935. The Theory of Atomic Spectra. Cambridge: Cambridge University Press.
Slater, John C. 1960. Quantum Theory of Atomic Structure. 2 vols. New York: McGraw-Hill.
Slater, John C. 1963. Quantum Theory of Molecules and Solids. New York: McGraw-Hill.
Sargent, Murray, III, Marlan O. Scully, and Willis E. Lamb Jr. 1974. Laser Physics. Reading, MA: Addison-Wesley.
Gaskill, Jack D. 1978. Linear Systems, Fourier Transforms, and Optics. New York: Wiley-Interscience.
Siegman, Anthony E. 1986. Lasers. Sausalito, CA: University Science Books.
Parr, Robert G., and Weitao Yang. 1989. Density-Functional Theory of Atoms and Molecules. International Series of Monographs on Chemistry. New York: Oxford University Press.
Mandel, Leonard, and Emil Wolf. 1995. Optical Coherence and Quantum Optics. Cambridge: Cambridge University Press.
Scully, Marlan O., and M. Suhail Zubairy. 1997. Quantum Optics. Cambridge: Cambridge University Press.
Born, Max, and Emil Wolf. 1999. Principles of Optics. Cambridge: Cambridge University Press.
Bransden, Brian H., and Charles J. Joachain. 2003. Physics of Atoms and Molecules. 2nd ed. Harlow, UK: Pearson Education.
Foot, Christopher J. 2005. Atomic Physics. Oxford: Oxford University Press.
Boyd, Robert W. 2008. Nonlinear Optics. 3rd ed. Amsterdam: Academic Press.
Garrison, John C., and Raymond Y. Chiao. 2008. Quantum Optics. Oxford Graduate Texts. Oxford: Oxford University Press.
Joannopoulos, John D., Steven G. Johnson, Joshua N. Winn, and Robert D. Meade. 2008. Photonic Crystals: Molding the Flow of Light. 2nd ed. Princeton, NJ: Princeton University Press.
Demtröder, Wolfgang. 2015. Laser Spectroscopy. 5th ed. 2 vols. Berlin: Springer.
Goodman, Joseph W. 2017. Introduction to Fourier Optics. 4th ed. New York: W. H. Freeman.
Saleh, Bahaa E. A., and Malvin Carl Teich. 2019. Fundamentals of Photonics. 3rd ed. Hoboken, NJ: Wiley.
Nuclear Physics
Blatt, John M., and Victor F. Weisskopf. 1952. Theoretical Nuclear Physics. New York: John Wiley & Sons.
Abragam, Anatole. 1961. The Principles of Nuclear Magnetism. Oxford: Clarendon Press.
Segre, Emilio. 1965. Nuclei and Particles: An Introduction to Nuclear and Subnuclear Physics. New York: W. A. Benjamin.
Enge, Harald A. 1966. Introduction to Nuclear Physics. Reading, MA: Addison-Wesley.
deShalit, Amos, and Herman Feshbach. 1974. Theoretical Nuclear Physics, Volume I: Nuclear Structure. New York: Wiley.
Krane, Kenneth S. 1987. Introductory Nuclear Physics. New York: Wiley.
Feshbach, Herman. 1992. Theoretical Nuclear Physics, Volume II: Nuclear Reactions. New York: Wiley.
Bloembergen, Nicolaas. 1996. Encounters in Magnetic Resonances. Singapore: World Scientific.
Wong, Samuel S. M. 1999. Introductory Nuclear Physics. New York: Wiley.
Condensed Matter, Quantum Liquids
Van Vleck, John H. 1932. The Theory of Electric and Magnetic Susceptibilities. Oxford: Oxford University Press.
Born, Max, and Kun Huang. 1954. Dynamical Theory of Crystal Lattices. Oxford: Clarendon Press.
Kittel, Charles. 1963. Quantum Theory of Solids. New York: John Wiley & Sons.
Schrieffer, J. Robert. 1964. Theory of Superconductivity. New York: W. A. Benjamin.
Pines, David, and Philippe Nozières. 1966. The Theory of Quantum Liquids. New York: W. A. Benjamin.
Ziman, J. M. 1972. Principles of the Theory of Solids. 2nd ed. Cambridge: Cambridge University Press.
Omar, M. Ali. 1975. Elementary Solid State Physics. Reading, MA: Addison-Wesley.
Ashcroft, Neil W., and N. David Mermin. 1976. Solid State Physics. Fort Worth, TX: Saunders College Publishing.
Anderson, Philip W. 1984. Basic Notions of Condensed Matter Physics. Menlo Park, CA: Benjamin/Cummings.
Vollhardt, Dieter, and Peter Wölfle. 1990. The Superfluid Phases of Helium 3. London: Taylor & Francis.
Bozorth, Richard M. 1993. Ferromagnetism. New York: Wiley-IEEE Press.
Auerbach, Assa. 1994. Interacting Electrons and Quantum Magnetism. New York: Springer-Verlag.
Kittel, Charles. 1996. Introduction to Solid State Physics. New York: Wiley.
Chaikin, Paul M., and Tom C. Lubensky. 1995. Principles of Condensed Matter Physics. Cambridge: Cambridge University Press.
Thouless, David J. 1998. Topological Quantum Numbers in Nonrelativistic Physics. Singapore: World Scientific.
Singleton, John. 2001. Band Theory and Electronic Properties of Solids. Oxford: Oxford University Press.
Šips, Vladimir. 2003. Uvod u fiziku čvrstog stanja. Zagreb: Školska knjiga.
Tinkham, Michael. 2004. Introduction to Superconductivity. 2nd ed. Mineola, NY: Dover Publications.
Leggett, Anthony James. 2006/2008. Quantum Liquids: Bose Condensation and Cooper Pairing in Condensed-Matter Systems. Oxford: Oxford University Press.
Altland, Alexander, and Ben Simons. 2010. Condensed Matter Field Theory. 2nd ed. Cambridge: Cambridge University Press.
Marder, Michael P. 2010. Condensed Matter Physics. 2nd ed. New York: Wiley.
Mahan, Gerald D. 2011. Condensed Matter in a Nutshell. Princeton, NJ: Princeton University Press.
Bernevig, B. Andrei, and T. L. Hughes. 2013. Topological Insulators and Topological Superconductors. Princeton, NJ: Princeton University Press.
Fradkin, Eduardo. 2013. Field Theories of Condensed Matter Physics. 2nd ed. Cambridge: Cambridge University Press.
Proukakis, Nick P., Simon A. Gardiner, Matthew Davis, and Marzena Szymanska, eds. 2013. Quantum Gases: Finite Temperature and Non-Equilibrium Dynamics. Cold Atoms, vol. 1. London: Imperial College Press.
Simon, Steven H. 2013. The Oxford Solid State Basics. Oxford: Oxford University Press.
Pitaevskii, Lev, and Sandro Stringari. 2016. Bose-Einstein Condensation and Superfluidity. International Series of Monographs on Physics. Oxford: Oxford University Press.
Groups, Algebras, Symmetry, Differential Geometry, Topology
Levi-Civita, Tullio. 1927. The Absolute Differential Calculus (Calculus of Tensors). Edited by Enrico Persico. London and Glasgow: Blackie & Son Limited.
Weyl, Hermann. 1931. Gruppentheorie und Quantenmechanik. 2nd ed. Leipzig: Hirzel.
Cartan, Élie. 1937–1938. Leçons sur la théorie des spineurs [The Theory of Spinors]. 2 vols. Paris: Hermann.
Wigner, Eugene P. 1959. Group Theory and Its Application to the Quantum Mechanics of Atomic Spectra. New York: Academic Press.
Kobayashi, Shoshichi, and Katsumi Nomizu. 1963–1969. Foundations of Differential Geometry. 2 vols. New York: Interscience Publishers.
Fonda, Luciano, and Gian Carlo Ghirardi. 1970. Symmetry Principles in Quantum Physics. New York: Marcel Dekker.
Bott, Raoul, and Loring W. Tu. 1982. Differential Forms in Algebraic Topology. New York: Springer-Verlag.
Nash, Charles, and Siddhartha Sen. 1983. Topology and Geometry for Physicists. New York: Academic Press.
Cornwell, J. F. 1984. Group Theory in Physics: An Introduction. London: Academic Press.
Penrose, Roger, and Wolfgang Rindler. 1984–1986. Spinors and Space-Time. 2 vols. Cambridge: Cambridge University Press.
Coleman, Sidney. 1985. Aspects of Symmetry: Selected Erice Lectures. Cambridge: Cambridge University Press.
Tung, Wu-Ki. 1985. Group Theory in Physics. Singapore: World Scientific.
Hamermesh, Morton. 1989. Group Theory and Its Application to Physical Problems. New York: Dover Publications.
Massey, William S. 1991. A Basic Course in Algebraic Topology. Springer.
Connes, Alain. 1994. Noncommutative Geometry. New York: Academic Press.
Majid, S. 1995. Introduction to Quantum Groups. Cambridge: Cambridge University Press.
Hou, Bo-yu, and Bo-yuan Hou. 1997. Differential Geometry for Physicists. World Scientific (Advanced Series on Theoretical Physical Science 6).
Georgi, Howard. 1999. Lie Algebras in Particle Physics. 2nd ed. Boulder, CO: Westview Press.
Spivak, Michael. 1999. A Comprehensive Introduction to Differential Geometry. 3rd ed. 5 vols. Houston, TX: Publish or Perish.
Doran, Chris, and Anthony Lasenby. 2003. Geometric Algebra for Physicists. Cambridge: Cambridge University Press.
Nakahara, Mikio. 2003. Geometry, Topology and Physics. 2nd ed. Boca Raton, FL: CRC Press.
Tinkham, Michael. 2003. Group Theory and Quantum Mechanics. New York: Dover Publications.
Gilmore, Robert. 2005. Lie Groups, Lie Algebras, and Some of Their Applications. Mineola, NY: Dover Publications.
Fecko, Marián. 2006. Differential Geometry and Lie Groups for Physicists. Cambridge: Cambridge University Press.
Kosmann-Schwarzbach, Yvette. 2010. Groups and Symmetries: From Finite Groups to Lie Groups. New York: Springer.
Frankel, Theodore. 2011. The Geometry of Physics. 3rd ed. Cambridge: Cambridge University Press.
Lee, John M. 2011. Introduction to Topological Manifolds. 2nd ed. Springer (Graduate Texts in Mathematics 202).
Tu, Loring W. 2011. An Introduction to Manifolds. 2nd ed. Springer (Universitext).
Zee, Anthony. 2016. Group Theory in a Nutshell for Physicists. Princeton, NJ: Princeton University Press.
Schwichtenberg, Jakob. 2018. Physics from Symmetry. 2nd ed. Cham, Switzerland: Springer.
Mathematical Physics, Analysis, Reference
Euler, Leonhard. 1744. Methodus inveniendi lineas curvas maximi minimive proprietate gaudentes, sive solutio problematis isoperimetrici latissimo sensu accepti. Lausanne: Apud Marcum-Michaelem Bousquet & Socios.
Courant, Richard, and David Hilbert. 1924. Methoden der mathematischen Physik. 2 vols. Berlin: Verlag von Julius Springer.
Whittaker, Edmund T., and George N. Watson. 1927. A Course of Modern Analysis. 4th ed. Cambridge: Cambridge University Press.
Frank, Philipp, and Richard von Mises. 1930–1935. Die Differential- und Integralgleichungen der Mechanik und Physik. 2nd ed. 2 vols. Braunschweig: Friedr. Vieweg & Sohn.
Gradshteyn, Izrail Solomonovich, and Iosif Moiseevich Ryzhik. 1943. Таблицы интегралов, сумм, рядов и произведений. Moscow: Gosudarstvennoe Izdatel’stvo Tehniko-Teoretičeskoj Literatury.
Watson, George N. 1944. A Treatise on the Theory of Bessel Functions. 2nd ed. Cambridge: Cambridge University Press.
Akhiezer, N. I., and I. M. Glazman. 1950/1993. Теория линейных операторов в гильбертовом пространстве / Theory of Linear Operators in Hilbert Space. Москва; Ленинград: Гос. изд-во технико-теоретической литературы / Reprint, revised; 2 vols. bound as 1. Mineola, NY: Dover Publications.
Kolmogorov, A. N. 1950/1956. Foundations of the Theory of Probability. Translation edited by Nathan Morrison. New York: Chelsea Publishing Company.
Erdélyi, Arthur, Wilhelm Magnus, Fritz Oberhettinger, and Francesco G. Tricomi, eds. 1953–1955. Higher Transcendental Functions. 3 vols. New York: McGraw-Hill.
Morse, Philip M., and Herman Feshbach. 1953. Methods of Theoretical Physics. 2 vols. New York: McGraw-Hill.
Korn, Arthur, and Maria Korn. 1961. Mathematical Handbook for Scientists and Engineers. New York: McGraw-Hill.
Gelfand, Israel M., and Sergei V. Fomin. 1963. Calculus of Variations. Englewood Cliffs, NJ: Prentice-Hall.
Tenenbaum, Morris, and Harry Pollard. 1963. Ordinary Differential Equations: An Elementary Textbook for Students of Mathematics, Engineering, and the Sciences. New York: Dover Publications.
Gelfand, Israel M., and Georgi E. Shilov. 1964–1968. Generalized Functions. 6 vols. New York: Academic Press.
Abramowitz, Milton, and Irene A. Stegun, eds. 1965. Handbook of Mathematical Functions with Formulas, Graphs, and Mathematical Tables. New York: Dover Publications.
Evgrafov, M. A. 1966. Analytic Functions. Translated by Scripta Technica. Philadelphia: W.B. Saunders Company.
Mehta, Madan Lal. 1967/1991/2004. Random Matrices. New York/Boston/San Diego: Academic Press/Elsevier.
Butkov, Eugene. 1968. Mathematical Physics. Reading, MA: Addison-Wesley.
Kudryavtsev, L. D. 1971. Kurs matematicheskogo analiza [Course of Mathematical Analysis]. 3 vols. Moscow: Vysshaya Shkola.
Vladimirov, V. S. 1971. Equations of Mathematical Physics. Translated by Audrey Littlewood. New York: Marcel Dekker.
Lebedev, Nikolai N. 1972. Special Functions and Their Applications. Translated by Richard A. Silverman. New York: Dover Publications.
Reed, Michael, and Barry Simon. 1972–1979. Methods of Modern Mathematical Physics. 4 vols. New York: Academic Press.
Olver, Frank W. J. 1974. Asymptotics and Special Functions. New York: Academic Press.
Askey, Richard, ed. 1975. Theory and Application of Special Functions. New York: Academic Press.
Crank, John. 1975. The Mathematics of Diffusion. 2nd ed. Oxford: Clarendon Press.
Szegő, Gábor. 1975. Orthogonal Polynomials. 4th ed. Colloquium Publications, vol. 23. Providence, RI: American Mathematical Society.
Maurin, Krzysztof. 1976. Analysis: Part I: Elements. Translated by Eugene Lepa. Dordrecht: D. Reidel Publishing.
Nikolsky, S. M. 1977.A Course of Mathematical Analysis. 2 vols. Translated by V.M. Volosov. Moscow: Mir Publishers.
Fedoryuk, M. V. 1980. Obyknovennye differentsialnye uravneniya [Ordinary Differential Equations]. Moscow: Nauka.
Maurin, Krzysztof. 1980. Analysis: Part II: Integration, Distributions, Holomorphic Functions, Tensor and Harmonic Analysis. Translated by Eugene Lepa. Dordrecht: D. Reidel Publishing.
Maurin, Krzysztof. 1980. Analysis: Part III: Introduction to Global Analysis. Translated by Eugene Lepa. Dordrecht: D. Reidel Publishing.
Bender, Carl M., and Steven A. Orszag. 1978. Advanced Mathematical Methods for Scientists and Engineers. New York: McGraw-Hill.
Ahlfors, Lars V. 1979. Complex Analysis: An Introduction to the Theory of Analytic Functions of One Complex Variable. 3rd ed. New York: McGraw-Hill.
Schutz, Bernard F. 1980. Geometrical Methods of Mathematical Physics. Cambridge: Cambridge University Press.
Clemens, C. Herbert. 1981. A Scrapbook of Complex Curve Theory. New York: Springer.
Farlow, Stanley J. 1982. Partial Differential Equations for Scientists and Engineers. Mineola, NY: Dover Publications.
Arnold, Vladimir I. 1983. Geometrical Methods in the Theory of Ordinary Differential Equations. New York: Springer.
Gardiner, C. W. 1985. Handbook of Stochastic Methods. Berlin: Springer.
Geroch, Robert. 1985. Mathematical Physics. Chicago: University of Chicago Press.
Sidorov, Yu. V., M. V. Fedoryuk, and M. I. Shabunin. 1985. Lectures on the Theory of Functions of a Complex Variable. Translated by E. Yankovsky. Moscow: Mir Publishers.
Thirring, Walter. 1986–1992. A Course in Mathematical Physics. 4 vols. New York: Springer.
Press, William H., Saul A. Teukolsky, William T. Vetterling, and Brian P. Flannery. 1988. Numerical Recipes in C: The Art of Scientific Computing. Cambridge: Cambridge University Press.
Moon, Parry, and Domina Eberle Spencer. 1988. Field Theory Handbook: Including Coordinate Systems, Differential Equations, and Their Solutions. 2nd ed. Berlin: Springer-Verlag.
Flanders, Harley. 1989. Differential Forms with Applications to the Physical Sciences. 2nd ed. New York: Dover Publications.
Fulton, William, and Joe Harris. 1991. Representation Theory: A First Course. New York: Springer.
Ames, William F. 1992. Numerical Methods for Partial Differential Equations. 3rd ed. Boston: Academic Press.
Bevington, Philip R., and D. Keith Robinson. 1992. Data Reduction and Error Analysis for the Physical Sciences. New York: McGraw-Hill.
Christodoulou, Demetrios, and Sergiu Klainerman. 1993. The Global Nonlinear Stability of the Minkowski Space. Princeton, NJ: Princeton University Press.
Arfken, George B., and Hans J. Weber. 1995. Mathematical Methods for Physicists. San Diego: Academic Press.
Dennery, Philippe, and André Krzywicki. 1996. Mathematics for Physicists. New York: Dover Publications.
Hairer, Ernst, and Gerhard Wanner. 1996. Solving Ordinary Differential Equations II: Stiff and Differential-Algebraic Problems. 2nd rev. ed. Berlin: Springer-Verlag.
Risken, Hannes. 1996. The Fokker-Planck Equation: Methods of Solution and Applications. 2nd ed. Springer Series in Synergetics. Berlin: Springer-Verlag.
Fulton, William. 1997. Young Tableaux: With Applications to Representation Theory and Geometry. Cambridge: Cambridge University Press.
Taylor, John R. 1997. An Introduction to Error Analysis: The Study of Uncertainties in Physical Measurements. Sausalito, CA: University Science Books.
Hill, Rodney. 1998. The Mathematical Theory of Plasticity. Oxford Classic Texts in the Physical Sciences. Oxford: Oxford University Press.
Andrews, George E., Richard Askey, and Ranjan Roy. 1999. Special Functions. Cambridge: Cambridge University Press.
Choquet-Bruhat, Yvonne, and Cécile DeWitt-Morette. 2000. Analysis, Manifolds and Physics: Part I: Basics. Rev. ed. Amsterdam: North-Holland.
Jaynes, Edwin T. 2003. Probability Theory: The Logic of Science. Edited by G. Larry Bretthorst. Cambridge: Cambridge University Press.
Stein, Elias M., and Rami Shakarchi. 2003–2011. Princeton Lectures in Analysis. 4 vols. Princeton, NJ: Princeton University Press.
Choquet-Bruhat, Yvonne, Cécile DeWitt-Morette, and Margaret Dillard-Bleick. 2004. Analysis, Manifolds and Physics: Part II: Applications. Rev. ed. Amsterdam: Elsevier.
Acton, Forman S. 2005. Real Computing Made Real: Preventing Errors in Scientific and Engineering Calculations. New York: Dover Publications.
Beklemishev, D. V. 2005. Kurs analiticheskoy geometrii i lineynoy algebry [Course of Analytic Geometry and Linear Algebra]. 10th ed. Moscow: Fizmatlit.
Lawler, Gregory F. 2005. Conformally Invariant Processes in the Plane. Mathematical Surveys and Monographs 114. Providence, RI: American Mathematical Society.
Arnold, V. I. 2006. Ordinary Differential Equations. Translated by Roger Cooke. Berlin: Springer.
Boas, Mary L. 2006. Mathematical Methods in the Physical Sciences. 3rd ed. Hoboken, NJ: Wiley.
Polyanin, Andrei D., and Alexei I. Manzhirov. 2007. Handbook of Mathematics for Engineers and Scientists: Concepts, Methods, and Formulas for Problem Solving. Boca Raton, FL: Chapman & Hall/CRC Press.
Van Kampen, Nicolaas G. 2007. Stochastic Processes in Physics and Chemistry. 3rd ed. Amsterdam: Elsevier.
Gowers, Timothy, June Barrow-Green, and Imre Leader, eds. 2008. The Princeton Companion to Mathematics. Princeton, NJ: Princeton University Press.
Evans, Lawrence C. 2010. Partial Differential Equations. 2nd ed. Providence, RI: American Mathematical Society.
Olver, Frank W. J., Daniel W. Lozier, Ronald F. Boisvert, and Charles W. Clark, eds. 2010. NIST Handbook of Mathematical Functions. Cambridge and New York, United States: Cambridge University Press.
Hassani, Sadri. 2013. Mathematical Physics: A Modern Introduction to Its Foundations. 2nd ed. Cham, Switzerland: Springer International Publishing.
Pishro-Nik, Hossein. 2014. Introduction to Probability, Statistics, and Random Processes. Blue Bell, PA: Kappa Research.
Higham, Nicholas J., ed. 2015. The Princeton Companion to Applied Mathematics. Princeton, NJ: Princeton University Press.
Hamilton, Kevin S. 2017. Mathematical Gauge Theory: With Applications to the Standard Model of Particle Physics. Cham, Switzerland: Springer.
Astrophysics
Kepler, Johannes. 1609. Astronomia Nova. Heidelberg: Ernst Vögelin.
Galilei, Galileo. 1610. Sidereus Nuncius. Venice: Tommaso Baglioni.
Galilei, Galileo. 1632. Dialogue Concerning the Two Chief World Systems. Florence: Giovanni Battista Landini.
Laplace, Pierre-Simon. 1798–1825. Traité de mécanique céleste. Paris: De l’Imprimerie de Crapelet; chez J.-B.-M. Duprat (vols. 1–3, 1798–1802); Courcier (vol. 4, 1805); Bachelier (vol. 5, 1825).
Gauss, Carl Friedrich. 1809. Theoria motus corporum coelestium in sectionibus conicis solem ambientium. Hamburg: Friedrich Perthes und I. H. Besser.
Poincaré, Henri. 1892. Les Méthodes Nouvelles de la Mécanique Céleste. 3 vols. Paris: Gauthier-Villars.
Chandrasekhar, Subrahmanyan. 1939. An Introduction to the Study of Stellar Structure. Chicago: University of Chicago Press.
Clayton, Donald D. 1968/1983. Principles of Stellar Evolution and Nucleosynthesis. New York: McGraw-Hill / Chicago: University of Chicago Press.
Rybicki, George B., and Alan P. Lightman. 1979. Radiative Processes in Astrophysics. New York: Wiley-Interscience.
Padmanabhan, Thanu. 2000–2002. Theoretical Astrophysics. 3 vols. Cambridge: Cambridge University Press.
Schneider, Peter. 2006/2015. Extragalactic Astronomy and Cosmology: An Introduction. Berlin: Springer.
Binney, James, and Scott Tremaine. 2008. Galactic Dynamics. 2nd ed. Princeton, NJ: Princeton University Press.
Bartelmann, Matthias. 2013. Theoretical Astrophysics: An Introduction. Weinheim: Wiley-VCH.
Carroll, Bradley W., and Dale A. Ostlie. 2017. An Introduction to Modern Astrophysics. 2nd ed. Cambridge: Cambridge University Press.
Problems
Landau, Lev D., Evgenii M. Lifshitz, and Lev V. Rozenkevich. 1935. Zadachi po Teoreticheskoi Fizike: Ch. I, Mekhanika [Problems on Theoretical Physics: Pt. I, Mechanics]. Khar’kov: Gosudarstvennoe Nauchno-Tekhnicheskoe Izdatel’stvo Ukrainy.
Sakharov, Dmitri I., and Ivan S. Kosminkov, eds. 1949. A Symposium of Problems in Physics. Kiev: Radyanska shkola.
Budak, B. M., A. A. Samarskii, and A. N. Tikhonov. 1964. A Collection of Problems in Mathematical Physics. Oxford: Pergamon Press.
Leighton, Robert B., ed. 1964. Exercises for The Feynman Lectures on Physics. Reading, MA: Addison-Wesley.
Kogan, V. I., and V. M. Galitskii. 1965. Problems in Quantum Mechanics. Moscow: Mir Publishers.
Goldsmid, H. Julian. 1968. Problems in Solid State Physics. London: Pion.
Dixon, W. G. 1970. Problems in Theoretical Physics. London: Pergamon Press.
Kotkin, G. L., and V. G. Serbo. 1971. Collection of Problems in Classical Mechanics. Oxford: Pergamon Press.
Wolkenstein, V. S. 1971. Problems in General Physics. Moscow: Mir Publishers.
Sena, L. A. 1972. Problems in Theoretical Physics. Moscow: Mir Publishers.
Stanić, Branko V., and Milutin I. Marković. 1973. Zbirka rešenih zadatka iz atomske fizike. Belgrade: Naučna knjiga.
Haar, D. ter. 1975. Problems in Statistical Physics. Oxford: Pergamon Press.
Lightman, Alan P., and Richard H. Price. 1975. Problems in General Relativity. New York: Wiley.
Batygin, V. V., and I. N. Toptygin. 1978. Problems in Electrodynamics. New York: Academic Press.
Kozel, Stanislav M., Ėmmanuil I. Rashba, and Sergeĭ A. Slavatinskiĭ. 1978. Sbornik zadach po fizike: Zadachi MFTI [Collection of Physics Problems: MIPT Problems]. Moscow: Nauka.
Irodov, I. E. 1979. Задачи по общей физике. Moscow: Nauka.
Bitsadze, A. V., and D. F. Kalinichenko. 1980. A Collection of Problems on the Equations of Mathematical Physics. Translated by V. M. Volosov and I. G. Volosova. Moscow: Mir Publishers.
Irodov, Igor E. 1980. Fundamental Laws of Mechanics. Moscow: Mir Publishers.
Medvedev, P. B. 1980. Problems in Quantum Field Theory. Moscow: Nauka Publishers.
Irodov, Igor E. 1983. Basic Laws of Electromagnetism. Moscow: Mir Publishers.
Kozel, S., E. Rashba, and S. Slavatinskii. 1983. Collected Problems in Physics. Moscow: Mir Publishers.
Doleček, Vlatko, Boško Šipovac, Slobodan Šipčić, and Nedeljko Lovren. 1984. Kinematika: Zbirka zadataka sa izvodima iz teorije. 2nd ed. Sarajevo: Svjetlost.
Bolibrukh, A., and A. N. Chernoplekov. 1985. Sbornik zadach po spetskursu “Analiz na mnogoobraziyakh” [Collection of Problems for the Special Course “Analysis on Manifolds”]. Moscow: MFTI.
Irodov, Igor E. 1986. Basic Laws of Quantum Mechanics. Moscow: Mir Publishers.
Doleček, Vlatko, Nedeljko Lovren, Slobodan Šipčić, and Boško Šipovac. 1990. Zbirka zadataka iz dinamike i oscilacija: Sa izvodima iz teorije. 2nd ed. Sarajevo: Svjetlost, Zavod za izdavanje udžbenika.
Newbury, Nathan, John Ruhl, Suzanne Staggs, Stephen Thorsett, and Michael Newman. 1991. Princeton Problems in Physics. Princeton, NJ: Princeton University Press.
Gol’dman, I. I., and V. D. Krivchenkov. 1993. Problems in Quantum Mechanics. New York: Dover Publications.
Lim, Yung-Kuo. 1995. Problems and Solutions on Solid State Physics, Relativity and Miscellaneous Topics. Singapore: World Scientific.
Kupčić, Ivan. 1998. Fizika čvrstog stanja - Zbirka zadataka. Zagreb: Hinus.
Ilakovac, Amon. 2001. Riješeni zadaci iz fizike elementarnih čestica. Zagreb: Školska knjiga.
Romanko, V. K., et al. 2002. Sbornik zadach po differentsialnym uravneniyam i variatsionnomu ischisleniyu [Collection of Problems on Differential Equations and Calculus of Variations]. Moscow: Laboratoriya Znaniy.
Dhawan, D. K. 2003. Problems in Solid State Physics. New Delhi: Campus Book International.
Pillai, S. O. 2008. Modern Physics and Solid State Physics: Problems and Solutions. New Delhi: New Age International.
Mihaly, Laszlo, and Michael C. Martin. 2009. Solid State Physics: Problems and Solutions. 2nd ed. Weinheim: Wiley-VCH.
Han, Fu. 2012. Problems in Solid State Physics. Singapore: World Scientific.
Interdisciplinary Topics
Bošković, Ruđer Josip. 1758. Theoria Philosophiae Naturalis. Milan: Stamperia di Giovanni Battista Traver.
Popper, Karl. 1934. Logik der Forschung: Zur Erkenntnistheorie der modernen Naturwissenschaft. Wien: Julius Springer.
Kuhn, Thomas S. 1962. The Structure of Scientific Revolutions. Chicago: University of Chicago Press.
Peierls, Rudolf. 1979. Surprises in Theoretical Physics. Princeton, NJ: Princeton University Press.
Bell, John S. 1987. Speakable and Unspeakable in Quantum Mechanics: Collected Papers on Quantum Philosophy. Cambridge: Cambridge University Press.
Cover, Thomas M., and Joy A. Thomas. 1991/2006. Elements of Information Theory. New York/Hoboken: Wiley-Interscience/John Wiley & Sons.
Peierls, Rudolf. 1991. More Surprises in Theoretical Physics. Princeton Series in Physics. Princeton, NJ: Princeton University Press.
Kaye, George W. C., and Thomas H. Laby. 1995. Tables of Physical and Chemical Constants. 16th ed. London: Longman.
Mantegna, Rosario N., and H. Eugene Stanley. 2000. An Introduction to Econophysics: Correlations and Complexity in Finance. Cambridge: Cambridge University Press.
Nielsen, Michael A., and Isaac L. Chuang. 2000. Quantum Computation and Quantum Information. Cambridge: Cambridge University Press.
Miller, John H., and Scott E. Page. 2007. Complex Adaptive Systems: An Introduction to Computational Models of Social Life. Princeton, NJ: Princeton University Press.
Kleinert, Hagen. 2009. Path Integrals in Quantum Mechanics, Statistics, Polymer Physics, and Financial Markets. 5th ed. Singapore: World Scientific.
Mézard, Marc, and Andrea Montanari. 2009. Information, physics, and computation. Oxford University Press.
Newman, Mark. 2010. Networks: An Introduction. Oxford: Oxford University Press.
Wang, Zhenghan. 2010. Topological Quantum Computation. Providence, RI: American Mathematical Society.
Wolf, Edward L. 2012. Principles of Electron Tunneling Spectroscopy. 2nd ed. Oxford: Oxford University Press.
Lidar, Daniel A., and Todd A. Brun, eds. 2013. Quantum Error Correction. Cambridge: Cambridge University Press.
Watrous, John. 2018. The Theory of Quantum Information. Cambridge: Cambridge University Press.
Popular
Poincaré, Henri. 1902. La Science et l’Hypothèse [Science and Hypothesis]. Paris: Flammarion.
Poincaré, Henri. 1913. The Foundations of Science. Translated by George Bruce Halsted. New York: The Science Press.
Thompson, D’Arcy Wentworth. 1917. On Growth and Form. Cambridge: Cambridge University Press.
Landau, Lev D., and Gennadii B. Rumer. 1959/1963. Chto takoe teoriya otnositel’nosti [What Is Relativity?]. Moscow: Izd. “Sovetskaya Rossiya.” English trans.: Edinburgh: Oliver and Boyd, 1960; New York: Basic Books, 1961; Moscow: Peace Publishers, 1964.
Feynman, Richard P. 1985. Surely You’re Joking, Mr. Feynman!: Adventures of a Curious Character. Edited by Edward Hutchings. New York: W.W. Norton & Company.
Rhodes, Richard. 1986. The Making of the Atomic Bomb. New York: Simon & Schuster.
Ulam, Stanisław. 1991. Adventures of a Mathematician. Berkeley: University of California Press.
Hewitt, Paul G. 1992. Conceptual Physics. Reading, MA: Addison-Wesley.
Schweber, Silvan S. 1994. QED and the Men Who Made It: Dyson, Feynman, Schwinger, and Tomonaga. Princeton, NJ: Princeton University Press.
Weinberg, Steven. 1994. Dreams of a Final Theory: The Scientist’s Search for the Ultimate Laws of Nature. New York: Vintage Books.
Rhodes, Richard. 1995. Dark Sun: The Making of the Hydrogen Bomb. New York: Simon & Schuster.
Guth, Alan H. 1997. The Inflationary Universe: The Quest for a New Theory of Cosmic Origins. Reading, MA: Addison-Wesley.
Ford, Kenneth, and John Archibald Wheeler. 1998. Geons, Black Holes, and Quantum Foam: A Life in Physics. New York: W. W. Norton.
Johnson, George. 1999. Strange Beauty: Murray Gell-Mann and the Revolution in Twentieth-Century Physics. New York: Knopf.
Mehra, Jagdish, and Kimball A. Milton. 2000. Climbing the Mountain: The Scientific Biography of Julian Schwinger. Oxford: Oxford University Press.
Enz, Charles. 2002. No Time to Be Brief: A Scientific Biography of Wolfgang Pauli. Oxford: Oxford University Press.
Penrose, Roger. 2004. The Road to Reality: A Complete Guide to the Laws of the Universe. London: Jonathan Cape.
Farmelo, Graham. 2009. The Strangest Man: The Hidden Life of Paul Dirac. New York: Basic Books.
Dumas, H. Scott. 2014. The KAM Story: A Friendly Introduction to the Content, History, and Significance of Classical Kolmogorov-Arnold-Moser Theory. New Jersey, United States: World Scientific Publishing Company.
Lancaster, Tom, and Stephen J. Blundell. 2014. Quantum Field Theory for the Gifted Amateur. Oxford: Oxford University Press.
Verma, H. C. 2019. Concepts of Physics. 2nd ed. New Delhi: Bharati Bhawan Publishers & Distributors.
Zee, A. 2025. Quantum Field Theory, as Simply as Possible. Princeton University Press.
Articles
Newton, Isaac. 1672. “New Theory about Light and Colors.” Philosophical Transactions of the Royal Society 6: 3075–3087.
Leibniz, Gottfried Wilhelm. 1684. “Nova Methodus pro Maximis et Minimis.” Acta Eruditorum 1: 383–92.
Maupertuis, Pierre-Louis Moreau de. 1744. “Accord de différentes loix de la nature qui avoient jusqu’ici paru incompatibles.” Mémoires de l’Académie Royale des Sciences et Belles-Lettres de Berlin 1744: 267–94.
Coulomb, Charles-Augustin de. 1785. "Premier Mémoire sur l’Électricité et le Magnétisme". Histoire de l’Académie Royale des Sciences Paris: Imprimerie Royale.
Young, Thomas. 1801. “Experiments and Calculations Relative to Physical Optics.” Philosophical Transactions of the Royal Society 91: 12–48. https://doi.org/10.1098/rstl.1801.0004.
Fresnel, Augustin-Jean. 1818. “Mémoire sur la Diffraction de la Lumière.” Annales de Chimie et de Physique 9: 57–144.
Ampère, André-Marie. 1820. “Mémoire sur les effets des courants électriques.” Annales de Chimie et de Physique 15: 59–76.
Fourier, Joseph. 1824. “Remarques Générales Sur Les Températures Du Globe Terrestre Et Des Espaces Planétaires.” Annales de Chimie et de Physique 27: 136–167.
Faraday, Michael. 1832. “Experimental Researches in Electricity.” Philosophical Transactions of the Royal Society 122: 125–162.
Hamilton, William Rowan. 1834. “On a General Method in Dynamics.” Philosophical Transactions of the Royal Society of London 124: 247–308. https://doi.org/10.1098/rstl.1834.0017.
Hamilton, William Rowan. 1835. “Second Essay on a General Method in Dynamics.” Philosophical Transactions of the Royal Society of London 125: 95–144. https://doi.org/10.1098/rstl.1835.0008.
Doppler, Christian. 1842. “Über das farbige Licht der Doppelsternen.” Abhandlungen der Königlichen Böhmischen Gesellschaft der Wissenschaften 2: 465–82.
Hamilton, William Rowan. 1844. “On Quaternions; or on a New System of Imaginaries in Algebra.” The London, Edinburgh, and Dublin Philosophical Magazine and Journal of Science, 3rd ser., 25 (166): 489–95. https://doi.org/10.1080/14786444408645047.
Helmholtz, Hermann von. 1847. “Über die Erhaltung der Kraft.” Annalen der Physik 125 (6): 233–56. https://doi.org/10.1002/andp.18471250603.
Clausius, Rudolf. 1850. “Über die bewegende Kraft der Wärme.” Annalen der Physik 155 (3): 368–97. https://doi.org/10.1002/andp.18501550306.
Green, George. 1850. “An Essay on the Application of Mathematical Analysis to the Theories of Electricity and Magnetism.” Journal für die reine und angewandte Mathematik 39: 73–89.
Cayley, Arthur. 1858. “A Memoir on the Theory of Matrices.” Philosophical Transactions of the Royal Society 148: 17–37.
Kirchhoff, Gustav Robert. 1860. “Ueber das Verhältnis zwischen dem Emissionsvermögen und dem Absorptionsvermögen der Körper für Wärme und Licht.” Annalen der Physik und Chemie 140 (2): 1–18. https://doi.org/10.1002/andp.18601850202.
Maxwell, John Clerk. 1861. “On Physical Lines of Force.” Philosophical Magazine 90: 11–23. https://doi.org/10.1080/14786431003659180.
Maxwell, James Clerk. 1865. “A Dynamical Theory of the Electromagnetic Field.” Philosophical Transactions of the Royal Society 155: 459–512.
Riemann, Bernhard. 1868. “Ueber die Hypothesen, welche der Geometrie zu Grunde liegen.” Abhandlungen der Königlichen Gesellschaft der Wissenschaften zu Göttingen 13: 133–152.
Boltzmann, Ludwig. 1872. “Weitere Studien über das Wärmegleichgewicht unter Gasmolekülen.” Sitzungsberichte der Kaiserlichen Akademie der Wissenschaften, mathematisch-naturwissenschaftliche Klasse 66: 275–370.
van der Waals, Johannes D. 1873. Over de Continuïteit van den Gas- en Vloeistoftoestand. PhD diss., Leiden University.
Gibbs, Josiah Willard. 1876. “On the Equilibrium of Heterogeneous Substances.” Transactions of the Connecticut Academy 3: 343–524.
Boltzmann, Ludwig. 1877. “Über die Beziehung eines allgemeinen mechanischen Satzes zum zweiten Hauptsatze der Wärmetheorie.” Sitzungsberichte der Kaiserlichen Akademie der Wissenschaften in Wien 76: 373–435.
Hertz, Heinrich. 1888. “Ueber die Ausbreitungsgeschwindigkeit der electrodynamischen Wirkungen.” Annalen der Physik 270 (7): 551–569.
Poincaré, Henri. 1890. “Sur le problème des trois corps et les équations de la dynamique. Divergence des séries de M. Lindstedt et remarques sur la stabilité des solutions.” Acta Mathematica 13: 1–270. https://doi.org/10.1007/BF02392506.
Thomson, J. J. 1897. “Cathode Rays.” Philosophical Magazine 44 (269): 293–316. https://doi.org/10.1080/14786449708621070.
Planck, Max. 1901. “Ueber das Gesetz der Energieverteilung im Normalspektrum.” Annalen der Physik 4 (3): 553–63. https://doi.org/10.1002/andp.19013090310.
Einstein, Albert. 1905-03-18. “Über einen die Erzeugung und Verwandlung des Lichtes betreffenden heuristischen Gesichtspunkt.” Annalen der Physik 17 (6): 132–48. https://doi.org/10.1002/andp.19053220607.
Einstein, Albert. 1905-05-11. “Über die von der molekularkinetischen Theorie der Wärme geforderte Bewegung von in ruhenden Flüssigkeiten suspendierten Teilchen.” Annalen der Physik 17 (8): 549–60. https://doi.org/10.1002/andp.19053220806.
Einstein, Albert. 1905-06-30. “Zur Elektrodynamik bewegter Körper”. Annalen der Physik 17 (10): 891–921. https://doi.org/10.1002/andp.19053221004.
Einstein, Albert. 1905-09-27. “Ist die Trägheit eines Körpers von seinem Energieinhalt abhängig?” Annalen der Physik 18 (13): 639–41. https://doi.org/10.1002/andp.19053231314.
Minkowski, Hermann. 1908. “Raum und Zeit.” Physikalische Zeitschrift 10: 104–11.
Rutherford, Ernest. 1911. “The Scattering of α and β Particles by Matter and the Structure of the Atom.” Philosophical Magazine 21 (125): 669–688. https://doi.org/10.1080/14786440408637070.
Bohr, Niels. 1913. “On the Constitution of Atoms and Molecules.” Philosophical Magazine 26 (151): 1–25. https://doi.org/10.1080/14786441308634955.
Einstein, Albert. 1915. “Die Feldgleichungen der Gravitation.” Sitzungsberichte der Preussischen Akademie der Wissenschaften 1915: 844–847.
Schwarzschild, Karl. 1916. “Über das Gravitationsfeld eines Massenpunktes nach der Einstein’schen Theorie.” Sitzungsberichte der Königlich Preussischen Akademie der Wissenschaften 1916: 189–196.
de Sitter, Willem. 1917. “On Einstein’s Theory of Gravitation and Its Astronomical Consequences.” Proceedings of the Royal Netherlands Academy of Arts and Sciences 19: 1217–25.
Noether, Emmy. 1918. “Invariante Variationsprobleme.” Nachrichten von der Gesellschaft der Wissenschaften zu Göttingen, Mathematisch-Physikalische Klasse 1918: 235–57.
Kaluza, Theodor. 1921. “Zum Unitätsproblem der Physik.” Sitzungsberichte der Preussischen Akademie der Wissenschaften 1921: 966–72.
Friedmann, Alexander. 1922. “Über die Krümmung des Raumes.” Zeitschrift für Physik 10 (1): 377–386. https://doi.org/10.1007/BF01332580.
Bose, Satyendra Nath. 1924. “Plancks Gesetz und Lichtquantenhypothese.” Zeitschrift für Physik 26 (1): 178–181. https://doi.org/10.1007/BF01327326.
de Broglie, Louis. 1924. Recherches sur la théorie des quanta. PhD diss., University of Paris.
Einstein, Albert. 1924. “Quantentheorie des einatomigen idealen Gases.” Sitzungsberichte der Preussischen Akademie der Wissenschaften 1924: 261–267.
Born, Max, Werner Heisenberg, and Pascual Jordan. 1925. “Zur Quantenmechanik II.” Zeitschrift für Physik 35 (8–9): 557–615.
Heisenberg, Werner. 1925. “Über quantentheoretische Umdeutung kinematischer und mechanischer Beziehungen.” Zeitschrift für Physik 33 (1): 879–93. https://doi.org/10.1007/BF01328377.
Ising, Ernst. 1925. “Beitrag zur Theorie des Ferromagnetismus.” Zeitschrift für Physik 31: 253–258. https://doi.org/10.1007/BF02980577.
Pauli, Wolfgang. 1925. “Über den Zusammenhang des Abschlusses der Elektronengruppen im Atom mit der Komplexstruktur der Spektren.” Zeitschrift für Physik 31 (1): 765–83. https://doi.org/10.1007/BF02980631.
Born, Max. 1926. “Zur Quantenmechanik der Stoßvorgänge.” Zeitschrift für Physik 37 (12): 863–67. https://doi.org/10.1007/BF01397477.
Dirac, Paul Adrien Maurice. 1926. “On the Theory of Quantum Mechanics.” Proceedings of the Royal Society A 112 (762): 661–677. https://doi.org/10.1098/rspa.1926.0133.
Fermi, Enrico. 1926. “Sulla quantizzazione del gas perfetto monoatomico.” Rendiconti Lincei 3: 145–149.
Klein, Oskar. 1926. “Quantentheorie und fünfdimensionale Relativitätstheorie.” Zeitschrift für Physik 37 (12): 895–906. https://doi.org/10.1007/BF01397481.
Schrödinger, Erwin. 1926. “Quantisierung als Eigenwertproblem (Erste Mitteilung).” Annalen der Physik 79 (4): 361–76. https://doi.org/10.1002/andp.19263840404.
Dirac, Paul Adrien Maurice. 1927. “The Quantum Theory of the Emission and Absorption of Radiation.” Proceedings of the Royal Society A 114 (767): 243–65. https://doi.org/10.1098/rspa.1927.0039.
Heisenberg, Werner. 1927. “Über den anschaulichen Inhalt der quantentheoretischen Kinematik und Mechanik.” Zeitschrift für Physik 43 (3-4): 172–198. https://doi.org/10.1007/BF01397280.
Dirac, Paul Adrien Maurice. 1928. “The Quantum Theory of the Electron.” Proceedings of the Royal Society A 117 (778): 610–24. https://doi.org/10.1098/rspa.1928.0023.
Hubble, Edwin. 1929. “A Relation between Distance and Radial Velocity among Extra-Galactic Nebulae.” Proceedings of the National Academy of Sciences 15 (3): 168–173. https://doi.org/10.1073/pnas.15.3.168.
Chandrasekhar, Subrahmanyan. 1931. “The Maximum Mass of Ideal White Dwarfs.” The Astrophysical Journal 74: 81–82. https://doi.org/10.1086/143324.
Dirac, Paul A. M. 1931. “Quantised Singularities in the Electromagnetic Field.” Proceedings of the Royal Society A 133 (821): 60–72. https://doi.org/10.1098/rspa.1931.0130.
von Neumann, John. 1932. “Mathematische Grundlagen der Quantenmechanik.” Mathematische Annalen 104 (1): 570–632. https://doi.org/10.1007/BF01457959.
Fermi, Enrico. 1934. “Tentativo di una teoria dei raggi β.” Il Nuovo Cimento 11 (1): 1–19. https://doi.org/10.1007/BF02959817.
Einstein, Albert, and Nathan Rosen. 1935. “The Particle Problem in the General Theory of Relativity.” Physical Review 48 (1): 73–77. https://doi.org/10.1103/PhysRev.48.73.
Einstein, Albert, Boris Podolsky, and Nathan Rosen. 1935. “Can Quantum-Mechanical Description of Physical Reality Be Considered Complete?” Physical Review 47 (10): 777–80. https://doi.org/10.1103/PhysRev.47.777.
Yukawa, Hideki. 1935. “On the Interaction of Elementary Particles. I.” Proceedings of the Physico-Mathematical Society of Japan 17: 48–57.
Landau, Lev D. 1937. “On the Theory of Phase Transitions.” Physikalische Zeitschrift der Sowjetunion 11: 26–47.
Majorana, Ettore. 1937. “Teoria simmetrica dell’elettrone e del positrone.” Il Nuovo Cimento 14 (4): 171–184.
Mott, Nevill F. 1937. “The Basis of the Electron Theory of Metals, with Special Reference to the Transition Metals.” Proceedings of the Physical Society (London), Section A 49 (4S): 469–82. https://doi.org/10.1088/0959-5309/49/4S/304.
Wigner, Eugene P. 1937. “On the Consequences of the Symmetry of the Nuclear Hamiltonian on the Spectroscopy of Nuclei.” Physical Review 51 (2): 106–19. https://doi.org/10.1103/PhysRev.51.106.
Bethe, Hans A. 1939. “Energy Production in Stars.” Physical Review 55 (5): 434–56. https://doi.org/10.1103/PhysRev.55.434.
Oppenheimer, J. Robert, and Hartland Snyder. 1939. “On Massive Neutron Cores.” Physical Review 56 (5): 455–459. https://doi.org/10.1103/PhysRev.56.455.
Wigner, Eugene P. 1939. “On Unitary Representations of the Inhomogeneous Lorentz Group.” Annals of Mathematics 40 (1): 149–204. https://doi.org/10.2307/1968551.
Kolmogorov, Andrey N. 1941. “The Local Structure of Turbulence in Incompressible Viscous Fluid for Very Large Reynolds Number.” Doklady Akademii Nauk SSSR 30 (4): 301–05.
Landau, Lev D. 1941. “Theory of the Superfluidity of Helium II.” Physical Review 60 (4): 356–358. https://doi.org/10.1103/PhysRev.60.356.
Stueckelberg, Ernst C. G. 1941. "La signification du temps propre en mécanique ondulatoire." Helvetica Physica Acta 14 (5–6): 322–22.
Alfvén, Hannes. 1942. “Existence of Electromagnetic-Hydrodynamic Waves.” Nature 150 (3805): 405–06. https://doi.org/10.1038/150405d0.
Onsager, Lars. 1944. “Crystal Statistics. I. A Two-Dimensional Model with an Order–Disorder Transition.” Physical Review 65 (3–4): 117–49. https://doi.org/10.1103/PhysRev.65.117.
Bloch, Felix, and Edward M. Purcell. 1946. “Nuclear Induction.” Physical Review 70 (7–8): 460–474. https://doi.org/10.1103/PhysRev.70.460.
Gamow, George. 1946. “Expanding Universe and the Origin of Elements.” Physical Review 70 (7–8): 572–73.
Landau, Lev D. 1946. “On the Vibrations of the Electronic Plasma.” Journal of Physics (USSR) 10, no. 1: 25–34.
Tomonaga, Sin-Itiro. 1946. “On a Relativistically Invariant Formulation of the Quantum Theory of Wave Fields.” Progress of Theoretical Physics 1 (2): 27–42. https://doi.org/10.1143/PTP.1.27.
Gamow, George. 1948. “The Origin of Elements and the Separation of Galaxies.” Physical Review 74 (4): 505–06. https://doi.org/10.1103/PhysRev.74.505.
Feynman, Richard P. 1948. “Space–Time Approach to Non-Relativistic Quantum Mechanics.” Reviews of Modern Physics 20 (2): 367–87. https://doi.org/10.1103/RevModPhys.20.367.
Schwinger, Julian. 1948. “On Quantum-Electrodynamics and the Magnetic Moment of the Electron.” Physical Review 73 (4): 416–17. https://doi.org/10.1103/PhysRev.73.416.
Dyson, Freeman J. 1949. “The Radiation Theories of Tomonaga, Schwinger, and Feynman.” Physical Review 75 (3): 486–502. https://doi.org/10.1103/PhysRev.75.486.
Feynman, Richard P. 1949. “Space–Time Approach to Quantum Electrodynamics.” Physical Review 76 (6): 769–89. https://doi.org/10.1103/PhysRev.76.769.
Gödel, Kurt. 1949. “An Example of a New Type of Cosmological Solutions of Einstein’s Field Equations of Gravitation.” Reviews of Modern Physics 21 (3): 447–50.
Goeppert-Mayer, Maria. 1949. “On Closed Shells in Nuclei. II.” Physical Review 75 (12): 1969–70. https://doi.org/10.1103/PhysRev.75.1969.
Metropolis, Nicholas, and Stanislaw Ulam. 1949. “The Monte Carlo Method.” Journal of the American Statistical Association 44 (247): 335–41. https://doi.org/10.1080/01621459.1949.10483310.
Ginzburg, Vitaly L., and Lev D. Landau. 1950. “On the Theory of Superconductivity.” Zhurnal Eksperimental’noi i Teoreticheskoi Fiziki 20: 1064–82.
Jensen, J. Hans D. 1950. “Zur Deutung der Isomerie bei den schweren Kernen.” Zeitschrift für Physik 128 (2): 82–106. https://doi.org/10.1007/BF01338276.
Bohr, Aage, Ben R. Mottelson, and Leo D. Rainwater. 1953. “Particle States and Collective Motion in Nuclei. I.” Physical Review 90 (4): 717–28. https://doi.org/10.1103/PhysRev.90.717.
Townes, Charles H. 1953. “The Maser—New Type of Amplifier, Frequency Standard, and Spectrometer.” Physical Review 92 (1): 1–2. https://doi.org/10.1103/PhysRev.92.1.
Gell-Mann, Murray, and Francis E. Low. 1954. “Quantum Electrodynamics at Small Distances.” Physical Review 95 (5): 1300–1312. https://doi.org/10.1103/PhysRev.95.1300.
Kolmogorov, A. N. 1954. “On the Conservation of Conditionally Periodic Motions under Small Perturbation of the Hamiltonian.” Doklady Akademii Nauk SSSR 98: 527–530.
Yang, Chen Ning, and Robert L. Mills. 1954. “Conservation of Isotopic Spin and Isotopic Gauge Invariance.” Physical Review 96 (1): 191–195. https://doi.org/10.1103/PhysRev.96.191.
Fermi, Enrico, John Pasta, and Stanislaw M. Ulam. 1955. “Studies of Nonlinear Problems.” Report LA-1940. Los Alamos, NM: Los Alamos Scientific Laboratory.
Lifshitz, Evgeny M. 1956. “The Theory of Molecular Attractive Forces between Solids.” Soviet Physics JETP 2: 73–83.
Yang, Chen Ning, and Tsung-Dao Lee. 1956. “Question of Parity Conservation in Weak Interactions.” Physical Review 104 (1): 254–58. https://doi.org/10.1103/PhysRev.104.254.
Abrikosov, Alexei A. 1957. “On the Magnetic Properties of Superconductors of the Second Group.” Soviet Physics JETP 5 (6): 1174–82.
Bardeen, John, Leon N. Cooper, and John R. Schrieffer. 1957. “Microscopic Theory of Superconductivity.” Physical Review 106 (1): 162–64. https://doi.org/10.1103/PhysRev.106.162.
Bardeen, John, Leon N. Cooper, and John R. Schrieffer. 1957. “Theory of Superconductivity.” Physical Review 108 (5): 1175–1204.
Anderson, Philip W. 1958. “Absence of Diffusion in Certain Random Lattices.” Physical Review 109 (5): 1492–1505. https://doi.org/10.1103/PhysRev.109.1492.
Aharonov, Yakir, and David Bohm. 1959. “Significance of Electromagnetic Potentials in the Quantum Theory.” Physical Review 115 (3): 485–491.
Arnowitt, Richard, Stanley Deser, and Charles W. Misner. 1959. “Dynamical Structure and Definition of Energy in General Relativity.” Physical Review 116 (5): 1322–1330. https://doi.org/10.1103/PhysRev.116.1322.
Nambu, Yoichiro. 1960. “Quasi-Particles and Gauge Invariance in the Theory of Superconductivity.” Physical Review 117 (3): 648–663. https://doi.org/10.1103/PhysRev.117.648.
Glashow, Sheldon L. 1961. “Partial-Symmetries of Weak Interactions.” Nuclear Physics 22: 579–88. https://doi.org/10.1016/0029-5582(61)90469-2.
Josephson, Brian D. 1962. “Possible New Effects in Superconductive Tunnelling.” Physics Letters 1 (7): 251–53. https://doi.org/10.1016/0031-9163(62)91369-0.
Moser, Jürgen. 1962. “On Invariant Curves of Area-Preserving Mappings of an Annulus.” Nachrichten der Akademie der Wissenschaften in Göttingen. II. Mathematisch-Physikalische Klasse 1962: 1–20.
Newman, Ezra T., and Roger Penrose. 1962. “An Approach to Gravitational Radiation by a Method of Spin Coefficients.” Journal of Mathematical Physics 3 (3): 566–578. https://doi.org/10.1063/1.1724257.
Anderson, Philip W. 1963. “Plasmons, Gauge Invariance, and Mass.” Physical Review 130: 439–442.
Arnold, Vladimir I. 1963. “Proof of a Theorem of A. N. Kolmogorov on the Preservation of Conditionally Periodic Motions under Small Perturbations of the Hamiltonian.” Russian Mathematical Surveys 18 (5): 9–36. https://doi.org/10.1070/RM1963v018n05ABEH001143.
Cabibbo, Nicola. 1963. “Unitary Symmetry and Leptonic Decays.” Physical Review Letters 10 (12): 531–33. https://doi.org/10.1103/PhysRevLett.10.531.
Glauber, Roy J. 1963. “The Quantum Theory of Optical Coherence.” Physical Review 130 (6): 2529–39. https://doi.org/10.1103/PhysRev.130.2529.
Kerr, Roy P. 1963. “Gravitational Field of a Spinning Mass as an Example of Algebraically Special Metrics.” Physical Review Letters 11 (5): 237–38. https://doi.org/10.1103/PhysRevLett.11.237.
Lorenz, Edward N. 1963. “Deterministic Nonperiodic Flow.” Journal of the Atmospheric Sciences 20 (2): 130–41. https://doi.org/10.1175/1520-0469(1963)020%3C0130:DNF%3E2.0.CO;2.
Bell, John S. 1964. “On the Einstein Podolsky Rosen Paradox.” Physics 1 (3): 195–200. https://doi.org/10.1103/PhysicsPhysiqueFizika.1.195.
Englert, François, and Robert Brout. 1964. “Broken Symmetry and the Mass of Gauge Vector Mesons.” Physical Review Letters 13 (9): 321–23. https://doi.org/10.1103/PhysRevLett.13.321.
Gell-Mann, Murray. 1964. “A Schematic Model of Baryons and Mesons.” Physics Letters 8 (3): 214–15. https://doi.org/10.1016/S0031-9163(64)92001-3.
Higgs, Peter W. 1964. “Broken Symmetries and the Masses of Gauge Bosons.” Physical Review Letters 13 (16): 508–09. https://doi.org/10.1103/PhysRevLett.13.508.
Hohenberg, Pierre, and Walter Kohn. 1964. "Inhomogeneous Electron Gas." Physical Review 136, no. 3B: B864–B871. https://doi.org/10.1103/PhysRev.136.B864.
Jaynes, Edwin T. 1965. “Gibbs vs Boltzmann Entropies.” American Journal of Physics 33 (5): 391–98. https://doi.org/10.1119/1.1971557.
Kohn, Walter, and Lu Jeu Sham. 1965. "Self-Consistent Equations Including Exchange and Correlation Effects." Physical Review 140, no. 4A: A1133–A1138. https://doi.org/10.1103/PhysRev.140.A1133.
Landau, Lev D. 1965. Collected Papers of L. D. Landau. Edited by Dirk ter Haar. Oxford: Pergamon Press.
Penrose, Roger. 1965. “Gravitational Collapse and Space-Time Singularities.” Physical Review Letters 14 (3): 57–59. https://doi.org/10.1103/PhysRevLett.14.57.
Penzias, Arno A., and Robert W. Wilson. 1965. “A Measurement of Excess Antenna Temperature at 4080 Mc/s.” The Astrophysical Journal 142: 419–21.
Mermin, N. D., and H. Wagner. 1966. “Absence of Ferromagnetism or Antiferromagnetism in One- or Two-Dimensional Isotropic Heisenberg Models.” Physical Review Letters 17 (22): 1133–1136. https://doi.org/10.1103/PhysRevLett.17.1133.
Coleman, Sidney, and Jeffrey Mandula. 1967. “All Possible Symmetries of the S Matrix.” Physical Review 159 (5): 1251–1256. https://doi.org/10.1103/PhysRev.159.1251.
DeWitt, Bryce S. 1967. “Quantum Theory of Gravity. I. The Canonical Theory.” Physical Review 160 (5): 1113–1148. https://doi.org/10.1103/PhysRev.160.1113.
Faddeev, L. D., and V. N. Popov. 1967. “Feynman Diagrams for the Yang–Mills Field.” Physics Letters B 25: 29–30.
Israel, Werner. 1967. “Event Horizons in Static Vacuum Space-Times.” Physical Review 164 (5): 1776–1779. https://doi.org/10.1103/PhysRev.164.1776.
Manabe, Syukuro, and Richard T. Wetherald. 1967. “Thermal Equilibrium of the Atmosphere with a Given Distribution of Relative Humidity.” Journal of the Atmospheric Sciences 24 (3): 241–59. https://doi.org/10.1175/1520-0469(1967)024%3C0241:TEOTAW%3E2.0.CO;2.
Sakharov, A. D. 1967. “Violation of CP Invariance, C Asymmetry, and Baryon Asymmetry of the Universe.” JETP Letters 5: 24–27.
Weinberg, Steven. 1967. “A Model of Leptons.” Physical Review Letters 19 (21): 1264–66. https://doi.org/10.1103/PhysRevLett.19.1264.
Atiyah, Michael F., and Isadore M. Singer. 1968. “The Index of Elliptic Operators. I.” Annals of Mathematics 87 (3): 484–530. https://doi.org/10.2307/1970715.
Salam, Abdus. 1968. “Weak and Electromagnetic Interactions.” In Elementary Particle Theory: Relativistic Groups and Analyticity (Nobel Symposium No. 8), edited by Nils Svartholm, 367–77. Stockholm: Almqvist & Wiksell.
Veneziano, Gabriele. 1968. “Construction of a Crossing-Symmetric, Regge-Behaved Amplitude for Linearly Rising Trajectories.” Il Nuovo Cimento A 57 (1): 190–197. https://doi.org/10.1007/BF02824451.
Adler, Stephen L. 1969. “Axial-Vector Vertex in Spinor Electrodynamics.” Physical Review 177 (5): 2426–2438. https://doi.org/10.1103/PhysRev.177.2426.
Callan, Curtis G., Jr. 1970. “Broken Scale Invariance in Scalar Field Theory.” Physical Review D 2 (8): 1541–1547. https://doi.org/10.1103/PhysRevD.2.1541.
Glashow, Sheldon L., John Iliopoulos, and Luciano Maiani. 1970. “Weak Interactions with Lepton-Hadron Symmetry.” Physical Review D 2 (7): 1285–92.
Leggett, Anthony J. 1970. “A Theoretical Description of the New Phases of Liquid He3.” Physical Review Letters 25 (22): 1543–46. https://doi.org/10.1103/PhysRevLett.25.1543.
Symanzik, Kurt. 1970. “Small Distance Behaviour in Field Theory and Power Counting.” Communications in Mathematical Physics 18 (3): 227–246. https://doi.org/10.1007/BF01649434.
Berezinskii, V. L. 1971. “Destruction of Long-Range Order in One-Dimensional and Two-Dimensional Systems Having a Continuous Symmetry Group I. Classical Systems.” Soviet Physics JETP 32 (3): 493–500.
Wilson, Kenneth G. 1971. “Renormalization Group and Critical Phenomena. I. Renormalization Group and the Kadanoff Scaling Picture.” Physical Review B 4 (9): 3174–83. https://doi.org/10.1103/PhysRevB.4.3174.
Anderson, Philip W. 1972. “More Is Different.” Science 177 (4047): 393–96. https://doi.org/10.1126/science.177.4047.393.
de Gennes, Pierre-Gilles. 1972. “An Analogy between Superconductors and Smectics A.” Solid State Communications 10 (9): 753–56. https://doi.org/10.1016/0038-1098(72)90189-0.
’t Hooft, Gerard, and Martinus J. G. Veltman. 1972. “Regularization and Renormalization of Gauge Fields.” Nuclear Physics B 44 (1): 189–213. https://doi.org/10.1016/0550-3213(72)90279-9.
Bardeen, James M., Brandon Carter, and Stephen W. Hawking. 1973. “The Four Laws of Black Hole Mechanics.” Communications in Mathematical Physics 31 (2): 161–170. https://doi.org/10.1007/BF01645742.
Coleman, Sidney, and Erick Weinberg. 1973. “Radiative Corrections as the Origin of Spontaneous Symmetry Breaking.” Physical Review D 7: 1888.
Gross, David J., and Frank Wilczek. 1973. “Ultraviolet Behavior of Non-Abelian Gauge Theories.” Physical Review Letters 30 (26): 1343–46. https://doi.org/10.1103/PhysRevLett.30.1343.
Kobayashi, Makoto, and Toshihide Maskawa. 1973. “CP-Violation in the Renormalizable Theory of Weak Interaction.” Progress of Theoretical Physics 49 (2): 652–57. https://doi.org/10.1143/PTP.49.652.
Kosterlitz, J. Michael, and David J. Thouless. 1973. “Ordering, Metastability and Phase Transitions in Two-Dimensional Systems.” Journal of Physics C: Solid State Physics 6 (7): 1181–203. https://doi.org/10.1088/0022-3719/6/7/010.
Politzer, H. David. 1973. “Reliable Perturbative Results for Strong Interactions?” Physical Review Letters 30 (26): 1346–49. https://doi.org/10.1103/PhysRevLett.30.1346.
’t Hooft, Gerard. 1974. “Magnetic Monopoles in Unified Gauge Theories.” Nuclear Physics B 79 (2): 276–84. https://doi.org/10.1016/0550-3213(74)90486-6.
Wess, Julius, and Bruno Zumino. 1974. “Supergauge Transformations in Four Dimensions.” Nuclear Physics B 70 (1): 39–50. https://doi.org/10.1016/0550-3213(74)90355-1.
Wilson, Kenneth G., and John Kogut. 1974. “The Renormalization Group and the ϵ-Expansion.” Physics Reports 12 (2): 75–200. https://doi.org/10.1016/0370-1573(74)90023-4.
Wilson, Kenneth G. 1974. “Confinement of Quarks.” Physical Review D 10: 2445–2459.
Bekenstein, Jacob D. 1973. “Black Holes and Entropy.” Physical Review D 7 (8): 2333–2346. https://doi.org/10.1103/PhysRevD.7.2333.
Hawking, Stephen W. 1975. “Particle Creation by Black Holes.” Communications in Mathematical Physics 43 (3): 199–220. https://doi.org/10.1007/BF02345020.
Wu, Tai Tsun, and Chen Ning Yang. 1975. “Concept of Nonintegrable Phase Factors and Global Formulation of Gauge Fields.” Physical Review D 12 (12): 3845–57.
Hasselmann, Klaus. 1976. “Stochastic Climate Models Part I. Theory.” Tellus 28 (6): 473–85. https://doi.org/10.3402/tellusa.v28i6.11316.
’t Hooft, Gerard. 1976. “Computation of the Quantum Effects Due to a Four-Dimensional Pseudoparticle.” Physical Review D 14: 3432.
Unruh, W. G. 1976. “Notes on Black-Hole Evaporation.” Physical Review D 14: 870.
Wolfenstein, L. 1978. “Neutrino Oscillations in Matter.” Physical Review D 17: 2369.
Parisi, Giorgio. 1979. “Infinite Number of Order Parameters for Spin-Glasses.” Physical Review Letters 43 (23): 1754–56. https://doi.org/10.1103/PhysRevLett.43.1754.
Bardeen, James M. 1980. “Gauge-Invariant Cosmological Perturbations.” Physical Review D 22 (8): 1882–1905. https://doi.org/10.1103/PhysRevD.22.1882.
Eguchi, Tohru, Peter B. Gilkey, and Andrew J. Hanson. 1980. “Gravitation, Gauge Theories and Differential Geometry.” Physics Reports 66 (6): 213–393. https://doi.org/10.1016/0370-1573(80)90130-1.
Guth, Alan H. 1981. “Inflationary Universe: A Possible Solution to the Horizon and Flatness Problems.” Physical Review D 23 (2): 347–56. https://doi.org/10.1103/PhysRevD.23.347.
Aspect, Alain, Philippe Grangier, and Gérard Roger. 1982. “Experimental Realization of Einstein-Podolsky-Rosen-Bohm Gedankenexperiment: A New Violation of Bell’s Inequalities.” Physical Review Letters 49 (25): 1804–1807.
Haldane, F. Duncan M. 1983. “Nonlinear Field Theory of Large-Spin Heisenberg Antiferromagnets: Semiclassically Quantized Solitons of the One-Dimensional Easy-Axis Néel State.” Physical Review Letters 50 (16): 1153–56. https://doi.org/10.1103/PhysRevLett.50.1153.
Laughlin, Robert B. 1983. “Anomalous Quantum Hall Effect: An Incompressible Quantum Fluid with Fractionally Charged Excitations.” Physical Review Letters 50 (18): 1395–98. https://doi.org/10.1103/PhysRevLett.50.1395.
Linde, Andrei D. 1983. “Chaotic Inflation.” Physics Letters B 129 (3–4): 177–81. https://doi.org/10.1016/0370-2693(83)90837-7.
Belavin, A. A., A. M. Polyakov, and A. B. Zamolodchikov. 1984. “Infinite Conformal Symmetry in Two-Dimensional Quantum Field Theory.” Nuclear Physics B 241 (2): 333–80. https://doi.org/10.1016/0550-3213(84)90052-X.
Berry, Michael V. 1984. “Quantal Phase Factors Accompanying Adiabatic Changes.” Proceedings of the Royal Society A 392: 45–57.
Green, Michael B., and John H. Schwarz. 1984. “Anomaly Cancellations in Type I String Theories.” Physics Letters B 149 (1–3): 117–22. https://doi.org/10.1016/0370-2693(84)91565-X.
Vilenkin, Alexander. 1985. “Cosmic Strings and Domain Walls.” Physics Reports 121 (5): 263–315. https://doi.org/10.1016/0370-1573(85)90033-X.
Atiyah, Michael F. 1988. “Topological Quantum Field Theories.” Publications Mathématiques de l’Institut des Hautes Études Scientifiques 68: 175–86. https://doi.org/10.1007/BF02698547.
Witten, Edward. 1988. “Topological Quantum Field Theory.” Communications in Mathematical Physics 117 (3): 353–86. https://doi.org/10.1007/BF01223371.
Weinberg, Steven. 1989. “The Cosmological Constant Problem.” Reviews of Modern Physics 61 (1): 1–23. https://doi.org/10.1103/RevModPhys.61.1.
Mukhanov, Viatcheslav F., H. A. Feldman, and Robert H. Brandenberger. 1992. “Theory of Cosmological Perturbations.” Physics Reports 215 (5–6): 203–333. https://doi.org/10.1016/0370-1573(92)90044-Z.
Polchinski, Joseph. 1993. “Effective Field Theory and the Fermi Surface.” In Recent Directions in Particle Theory: From Superstrings and Black Holes to the Standard Model (TASI 92), edited by Jeffrey Harvey and Joseph Polchinski, 235–74. Redwood City, CA: Addison-Wesley.
Seiberg, Nathan, and Edward Witten. 1994. “Electric–Magnetic Duality, Monopole Condensation, and Confinement in N=2 Supersymmetric Yang–Mills Theory.” Nuclear Physics B 426 (1): 19–52. https://doi.org/10.1016/0550-3213(94)90124-4.
Polchinski, Joseph. 1995. “Dirichlet Branes and Ramond-Ramond Charges.” Physical Review Letters 75 (26): 4724–4727. https://doi.org/10.1103/PhysRevLett.75.4724.
Witten, Edward. 1995. “String Theory Dynamics in Various Dimensions.” Nuclear Physics B 443 (1-2): 85–126. https://doi.org/10.1016/0550-3213(95)00158-O.
Donoghue, John F. 1997. “Introduction to the Effective Field Theory Description of Gravity.” In Proceedings of the Advanced School on Effective Theories, Almunecar, Spain, edited by Fernando Cornet and M. J. Herrero, 1–45. Singapore: World Scientific. arXiv:gr-qc/9512024.
Kofman, Lev, Andrei Linde, and Alexei A. Starobinsky. 1997. “Towards the Theory of Reheating After Inflation.” Physical Review D 56: 3258.
Martin, Stephen P. 1997. “A Supersymmetry Primer.” In Perspectives on Supersymmetry, edited by Gordon L. Kane, 1–98. Singapore: World Scientific.
Maldacena, Juan M. 1999. “The Large-N Limit of Superconformal Field Theories and Supergravity.” International Journal of Theoretical Physics 38 (4): 1113–1133. https://doi.org/10.1023/A:1026654312961.
Perlmutter, Saul, George Aldering, Greg Goldhaber, Robert A. Knop, Peter Nugent, et al. 1999. “Measurements of Ω and Λ from 42 High-Redshift Supernovae.” The Astrophysical Journal 517 (2): 565–86. https://doi.org/10.1086/307221.
Wald, Robert M. 2001. “The Thermodynamics of Black Holes.” Living Reviews in Relativity 4: Article 6. https://doi.org/10.12942/lrr-2001-6.
Bousso, Raphael. 2002. “The Holographic Principle.” Reviews of Modern Physics 74 (3): 825–74. https://doi.org/10.1103/RevModPhys.74.825.
Freedman, Michael H., Alexei Kitaev, Michael J. Larsen, and Zhenghan Wang. 2003. “Topological Quantum Computation.” Bulletin of the American Mathematical Society 40 (1): 31–38. https://doi.org/10.1090/S0273-0979-02-00964-3.
Kachru, Shamit, Renata Kallosh, Andrei Linde, and Sandip P. Trivedi. 2003. “de Sitter Vacua in String Theory.” Physical Review D 68: 046005.
Bartolo, Nicola, Eiichiro Komatsu, Sabino Matarrese, and Antonio Riotto. 2004. “Non-Gaussianity from Inflation: Theory and Observations.” Physics Reports 402 (3): 103–266. https://doi.org/10.1016/j.physrep.2004.08.022.
Tegmark, Max, et al. 2004. “Cosmological Parameters from SDSS and WMAP.” Physical Review D 69: 103501.
Britto, Ruth, Freddy Cachazo, Bo Feng, and Edward Witten. 2005. “Direct Proof of the Tree-Level Scattering Amplitude Recursion Relation in Yang–Mills Theory.” Physical Review Letters 94, 181602. https://doi.org/10.1103/PhysRevLett.94.181602.
Mohapatra, Rabindra N., and Alexei Y. Smirnov. 2006. “Neutrino Mass and New Physics Beyond the Standard Model.” Annual Review of Nuclear and Particle Science 56: 569–628. https://doi.org/10.1146/annurev.nucl.56.080805.140534.
Douglas, Michael R., and Shamit Kachru. 2007. “Flux Compactification.” Reviews of Modern Physics 79 (2): 733–96. https://doi.org/10.1103/RevModPhys.79.733.
Gourgoulhon, Éric. 2007. “3+1 Formalism in General Relativity: Bases of Numerical Relativity.” Living Reviews in Relativity 10:1. https://doi.org/10.12942/lrr-2007-1.
Komargodski, Zohar, and Adam Schwimmer. 2011. “On Renormalization Group Flows in Four Dimensions.” Journal of High Energy Physics 2011 (12): 099. https://doi.org/10.1007/JHEP12(2011)099.
Poisson, Eric, Adam Pound, and Ian Vega. 2011. “The Motion of Point Particles in Curved Spacetime.” Living Reviews in Relativity 14:7. https://doi.org/10.12942/lrr-2011-7.
Beisert, Niklas, Changrim Ahn, Luis F. Alday, Zoltan Bajnok, John M. Drummond, et al. 2012. “Review of AdS/CFT Integrability: An Overview.” Letters in Mathematical Physics 99 (1–3): 3–32. https://doi.org/10.1007/s11005-011-0529-2.
Blanchet, Luc. 2014. “Gravitational Radiation from Post-Newtonian Sources and Inspiralling Compact Binaries.” Living Reviews in Relativity 17:2. https://doi.org/10.12942/lrr-2014-2.
Chatrchyan, S., et al. (CMS Collaboration). 2014. “Measurement of the Properties of a Higgs Boson in the Four-Lepton Final State.” Physical Review D 89: 092007.
Will, Clifford M. 2014. “The Confrontation between General Relativity and Experiment.” Living Reviews in Relativity 17:4. https://doi.org/10.12942/lrr-2014-4.
Abbott, B. P., et al. (LIGO Scientific Collaboration and Virgo Collaboration). 2016. “GW150914: First Results from the Search for Binary Black Hole Coalescence with Advanced LIGO.” Physical Review D 93: 122003.
Fan, X., T. G. Myers, B. A. D. Sukra, and G. Gabrielse. 2023. “Measurement of the Electron Magnetic Moment.” Physical Review Letters 130 (7): 071801. https://doi.org/10.1103/PhysRevLett.130.071801.
Particle Data Group. 2024. “Review of Particle Physics.” Physical Review D 110: 030001. https://doi.org/10.1103/PhysRevD.110.030001.