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Unlike most other texts on the subject, this clear, concise introduction to the theory of microscopic bodies treats the modern theory of critical phenomena. Provides up-to-date coverage of recent major advances, including a self-contained description of thermodynamics and the classical kinetic theory of gases, interesting applications such as superfluids and the quantum Hall effect, several current research applications, The last three chapters are devoted to the Landau-Wilson approach to critical phenomena. Many new problems and illustrations have been added to this edition.
Statistical physics --- Statistical mechanics --- Mécanique statistique --- 531.19 --- 536.75 --- Entropy. Statistical thermodynamics. Irreversible processes --- Statistical mechanics. --- 536.75 Entropy. Statistical thermodynamics. Irreversible processes --- 531.19 Statistical mechanics --- Mécanique statistique --- Mechanics --- Mechanics, Analytic --- Quantum statistics --- Thermodynamics --- Critical phenomena in statistical mechanics --- Ising model --- Bosons --- Fermi systems --- Renormalization groups --- Onsager relations --- Landau's theory --- Superfluidity --- Quantum statistical mechanics --- Transport phenomena --- Kinetic theory
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Modern electronic devices and novel materials often derive their extraordinary properties from the intriguing, complex behavior of large numbers of electrons forming what is known as an electron liquid. This book provides an in-depth introduction to the physics of the interacting electron liquid in a broad variety of systems, including metals, semiconductors, artificial nano-structures, atoms and molecules. One, two and three dimensional systems are treated separately and in parallel. Different phases of the electron liquid, from the Landau Fermi liquid to the Wigner crystal, from the Luttinger liquid to the quantum Hall liquid are extensively discussed. Both static and time-dependent density functional theory are presented in detail. Although the emphasis is on the development of the basic physical ideas and on a critical discussion of the most useful approximations, the formal derivation of the results is highly detailed and based on the simplest, most direct methods.
Fermi liquid theory --- Fermi surfaces --- Hartree-Fock approximation --- Many-body problem --- Quantum field theory --- Relativistic quantum field theory --- Field theory (Physics) --- Quantum theory --- Relativity (Physics) --- n-body problem --- Problem of many bodies --- Problem of n-bodies --- Mechanics, Analytic --- Hartree approximation --- Hartree-Fock-Slater approximation --- Approximation theory --- Atoms --- Energy-band theory of solids --- Self-consistent field theory --- Surfaces, Fermi --- Electrons --- Free electron theory of metals --- Quantum statistics --- Landau Fermi liquid theory --- Landau theory of Fermi liquids --- Landau's theory of Fermi liquids --- Fermi liquids
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Modern electronic devices and novel materials often derive their extraordinary properties from the intriguing, complex behavior of large numbers of electrons forming what is known as an electron liquid. This book introduces the quantum theory of the electron liquid and the mathematical techniques that describe it. The electron liquid's behavior is governed by the laws of quantum mechanics which prevail over the microscopic world of atoms and molecules.
Fermi liquid theory --- Fermi surfaces --- Hartree-Fock approximation --- Many-body problem --- Quantum field theory --- 530.145 --- Quantum theory --- 530.145 Quantum theory --- Relativistic quantum field theory --- Field theory (Physics) --- Relativity (Physics) --- n-body problem --- Problem of many bodies --- Problem of n-bodies --- Mechanics, Analytic --- Hartree approximation --- Hartree-Fock-Slater approximation --- Approximation theory --- Atoms --- Energy-band theory of solids --- Self-consistent field theory --- Surfaces, Fermi --- Electrons --- Free electron theory of metals --- Quantum statistics --- Landau Fermi liquid theory --- Landau theory of Fermi liquids --- Landau's theory of Fermi liquids --- Fermi liquids
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Approximation de Hartree-Fock --- Fermi liquid theory --- Fermionen --- Fermions --- Hartree-Fock approximatie --- Hartree-Fock approximation --- Many-body problem --- Perturbation (Dynamique quantique) --- Perturbation (Quantum dynamics) --- Problem of many bodies --- Problem of n-bodies --- Probleme a n corps --- Storing (Quantumdynamica) --- n-body problem --- n-lichaamprobleem --- Many-body problem. --- Density functionals. --- Hartree-Fock approximation. --- Problème des N corps --- Fonctionnelles densité --- Perturbation (Mécanique quantique) --- Théorie des liquides de Fermi --- Méthode d'approximation Hartree-Fock --- Fermi liquid theory. --- Fermions. --- Perturbation (Quantum dynamics). --- Problème des N corps --- Fonctionnelles densité --- Perturbation (Mécanique quantique) --- Théorie des liquides de Fermi --- Méthode d'approximation Hartree-Fock --- 530.19 --- 530.19 Fundamental functions in general. Potential. Gradient. Intensity. Capacity etc. --- Fundamental functions in general. Potential. Gradient. Intensity. Capacity etc. --- Density functionals --- Perturbation theory, Quantum mechanical --- Perturbation (Mathematics) --- Quantum theory --- Mechanics, Analytic --- Hartree approximation --- Hartree-Fock-Slater approximation --- Approximation theory --- Atoms --- Energy-band theory of solids --- Self-consistent field theory --- Fermi-Dirac particles --- Particles (Nuclear physics) --- Quantum statistics --- Interacting boson-fermion models --- Leptons (Nuclear physics) --- Landau Fermi liquid theory --- Landau theory of Fermi liquids --- Landau's theory of Fermi liquids --- Fermi liquids --- Density functional methods --- Density functional theory --- Functional methods, Density --- Functionals, Density --- Functional analysis --- Fundamental functions in general. Potential. Gradient. Intensity. Capacity etc --- Quantum mechanics. Quantumfield theory
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