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Et maintenant, attachez vos ceintures. Non pas que ce soit particulièrement difficile à comprendre, mais tout simplement parce que ça va vous sembler le comble du ridicule. Jugez-en: nous dessinons des petites flèches sur une feuille de papierç C'est tout. L'électrodynamique quantique, qui décrit les interactions entre lumière et matière, prototype des théories de la physique moderne, devient un jeu d'enfant quand elle est expliquée par un de ses créateurs.
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This work provides a necessary overview of the quantum description of electromagnetic field in order to understand the various physical processes associated with those photon-atom interactions appearing in atom and molecular physics, quantum optics and laser physics.
Quantum electrodynamics. --- Photons. --- Atoms. --- Chemistry, Physical and theoretical --- Matter --- Stereochemistry --- Light quantum --- Light --- Einstein-Podolsky-Rosen experiment --- Electrodynamics, Quantum --- QED (Physics) --- Quantum field theory --- Schwinger action principle --- Constitution
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Quantum chromodynamics is the fundamental theory of strong interactions. It is a physical theory describing Nature. Lectures on Quantum Chromodynamics concentrates, however, not on the phenomenological aspect of QCD; books with comprehensive coverage of phenomenological issues have been written. What the reader will find in this book is a profound discussion on the theoretical foundations of QCD with emphasis on the nonperturbative formulation of the theory: What is gauge symmetry on the classical and on the quantum level? What is the path integral in field theory? How to define the pa
Quantum chromodynamics. --- Particles (Nuclear physics) --- Elementary particles (Physics) --- High energy physics --- Nuclear particles --- Nucleons --- Nuclear physics --- Chromodynamics, Quantum --- QCD (Nuclear physics) --- Quantum electrodynamics
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Divergencies in quantum field theory referred to as "infinite zero-point energy" have been a problem for 70 years. Renormalization has always been considered an unsatisfactory remedy. In 1985 it was found that Maxwell's equations generally do not have solutions that satisfy the causality law. An additional term for magnetic dipole currents corrected this shortcoming. Rotating magnetic dipoles produce magnetic dipole currents, just as rotating electric dipoles in a material like barium titanate produce electric dipole currents. Electric dipole currents were always part of Maxwell's equations.
Maxwell equations. --- Quantum electrodynamics. --- Electrodynamics, Quantum --- QED (Physics) --- Quantum field theory --- Schwinger action principle --- Equations, Maxwell --- Differential equations, Partial --- Electromagnetic theory
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It is well known that classical electrodynamics is riddled with internal inconsistencies springing from the fact that it is a linear, Abelian theory in which the potentials are unphysical. This volume offers a self-consistent hypothesis which removes some of these problems, as well as builds a framework on which linear and nonlinear optics are treated as a non-Abelian gauge field theory based on the emergence of the fundamental magnetizing field of radiation, the B(3) field.
Contents:
Electrodynamics. --- Quantum electrodynamics. --- Quantum theory. --- Quantum dynamics --- Quantum mechanics --- Quantum physics --- Physics --- Mechanics --- Thermodynamics --- Electrodynamics, Quantum --- QED (Physics) --- Quantum field theory --- Schwinger action principle --- Dynamics
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This book consists of reviews covering all aspects of quantum chromodynamics as we know it today. The articles have been written by recognized experts in this field, in honor of the 75th birthday of Professor Boris Ioffe. Combining features of a handbook and a textbook, this is the most comprehensive source of information on the present status of QCD. It is intended for students as well as physicists - both theorists and experimentalists.Each review is self-contained and pedagogically structured, providing the general formulation of the problem, telling where it stands with respect to other is
Quantum chromodynamics. --- Chromodynamics, Quantum --- QCD (Nuclear physics) --- Particles (Nuclear physics) --- Quantum electrodynamics --- Ioffe, B. L., --- Ioffe, Boris Lazarevich, --- Иоффе, Б. Л., --- Иоффе, Борис Лазаревич,
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