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MECANIQUE RATIONNELLE --- MECANIQUE CELESTE --- PROBLEME DES N CORPS
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"Singlemindedly devoted to its job of educating potential many-particle theorists ... deserves to become the standard text in the field."--'Physics Today.' "The most comprehensive textbook yet published in its field and every postgraduate student or teacher in this field should own or have access to a copy."--'Endeavor'. A self-contained treatment of nonrelativistic many-particle systems, this text discusses both formalism and applications. Chapters on second quantization and statistical mechanics introduce ground-state (zero-temperature) formalism, which is explored by way of Green's functions and field theory (fermions), Fermi systems, linear response and collective modes, and Bose systems. Finite-temperature formalism is examined through field theory at finite temperature, physical systems at finite temperature, and real-time Green's functions and linear response. Additional topics cover canonical transformations and applications to physical systems in terms of nuclear matter, phonons and electrons, superconductivity, and superfluid helium as well as applications to finite systems. 1971 ed. 149 figures. 8 tables.
Many-body problem --- Problème des N corps --- Many-body problem. --- Problème des N corps
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Astronomy --- Many-body problem --- Astronomie --- Problème des N corps --- Congresses --- Congrès --- Problème des N corps --- Congrès
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Probleme des N corps --- Champs, Théorie quantique des --- 530.145 --- #WSCH:AAS2 --- Quantum theory --- 530.145 Quantum theory
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This book develops the basic formalism and theoretical techniques for studying relativistic quantum field theory at high temperature and density. Specific physical theories treated include QED, QCD, electroweak theory, and effective nuclear field theories of hadronic and nuclear matter. Topics covered include: functional integral representation of the partition function, diagrammatic expansions, linear response theory, screening and plasma oscillations, spontaneous symmetry breaking, Goldstone theorem, resummation and hard thermal loops, lattice gauge theory, phase transitions, nucleation theory, quark-gluon plasma, and color superconductivity. Applications to astrophysics and cosmology cover white dwarf and neutron stars, neutrino emissivity, baryon number violation in the early universe, and cosmological phase transitions. Applications to relativistic nucleus-nucleus collisions are also included. The book is written for theorists in elementary particle physics, nuclear physics, astrophysics, and cosmology. Released initially in 2006, this title has been reissued as an Open Access publication on Cambridge Core.
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Solid state physics --- Condensed matter --- Many-body problem --- Perturbation (Quantum dynamics) --- Matière condensée --- Problème des N corps --- Perturbation (Mécanique quantique) --- Matière condensée --- Problème des N corps --- Perturbation (Mécanique quantique) --- Condensed matter.
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Many-body problem --- Physique statistique --- Problem of many bodies --- Problem of n-bodies --- Probleme a n corps --- Statistical physics --- Statistische fysica --- n-body problem --- n-lichaamprobleem --- Problème des N corps --- Problème des N corps
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Many-body problem --- Oscillations --- Atoms --- Metal crystals --- Nuclear physics --- Mathematical physics --- Problème des N corps --- Atomes --- Cristaux métalliques --- Physique nucléaire --- Physique mathématique --- Problème des N corps --- Cristaux métalliques --- Physique nucléaire --- Physique mathématique
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