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Anderson P.W. — Basic notions of condensed matter physics
Anderson P.W. — Basic notions of condensed matter physics



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Название: Basic notions of condensed matter physics

Автор: Anderson P.W.

Аннотация:

This monograph is an intelligible introduction to some of the most significant concepts in the physics of condensed matter. The general principles of many-body physics and perturbation theory are emphasized, providing supportive mathematical structure.


Язык: en

Рубрика: Физика/Физика твёрдого тела/

Статус предметного указателя: Готов указатель без номеров страниц

ed2k: ed2k stats

Год издания: 1984

Количество страниц: 225

Добавлена в каталог: 26.07.2005

Операции: Положить на полку | Скопировать ссылку для форума | Скопировать ID
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Предметный указатель
Ammonia molecule      
Anderson Hamiltonian      
Anharmonicity      
Antiferromagnet      
Antiferromagnet broken symmetry      
Antiferromagnet exchange      
Antiferromagnet order parameter      
Antiferromagnet spin waves      
Antiferromagnetic resonance
Aromatic compounds
BCS theory      
Bethe — Salpeter equation      
big bang      
Block spin transformation      
Boltzmann equation
Bose condensation
Bose liquid      
Bose solid      
Broken symmetry
Broken symmetry $N\to\infty$ limit      
Broken symmetry gauge
Broken symmetry generalized rigidity      
Broken symmetry order parameter      
Broken symmetry rotational
Broken symmetry time-reversal      
Broken symmetry translational
Configuration space
Continuity principle
Correlation energy of free electrons
Corresponding states
Counterterm
Critical exponents      
Crossover
Crystalline order
Crystalline order free energy
Crystalline order parameter
Debye model      
Debye — Born — Van Karman model      
Defects disclinations
Defects dislocations      
Defects domain walls      
Defects in theory of melting      
Defects line singularities      
Defects point singularities
Defects topological theory of      
Density wave as a solid
Density wave charge      
Density wave commensurate      
Density wave incommensurate      
Density wave mass
Density wave spin      
Diagrams
dielectric constant      
Dyson's equation      
Eigenoperators      
Eigenoperators irrelevant
Eigenoperators relevant
Einstein model
Exchange
Exchange of four particles
excitons
Exponents
Fermi gas
Fermi liquid      
Fermi liquid generalized theory
Fermi liquid in nuclei      
Fermi liquid Landau's theory
Fermi liquid spin susceptibility
Fermi solid
Ferroelectric
Ferroelectric fluctuations
Ferroelectric free energy
Ferroelectric interactions
Ferroelectric phase transition
Ferroelectric renormalization group      
Ferroelectric susceptibility      
Ferroelectric symmetry
Feynman diagrams
Feynman diagrams bubble      
Feynman diagrams for ferroelectric      
Feynman diagrams ladder      
Feynman diagrams linked      
Feynman diagrams parquet
Feynman diagrams self-energy
Feynman diagrams vacuum
Feynman diagrams vertex corrections
Fixed point      
Fixed point infrared      
Fluctuations      
Fluctuations Gibbs theory      
Fluctuations Ornstein — Zernike
Friction
Gaussian model
Gibbs fluctuation theory
Goldstone boson
Green's functions
Hartree approximation applied to solids      
Hartree — Fock theory      
Hartree — Fock theory applied to solids      
Heisenberg Hamiltonian      
Heitler — London      
Helium liquids      
Helium solids      
Helium-3
Hubbard model      
Hubbard model for bosons
Huckel theory
Hydrodynamic modes
hydrogen molecule
Hydrogen molecule Bose case      
Hyper — Hartree — Fock theory
Irrelevant scaling variables,
Jastrow wave function
Kondo problem
Kondo problem continuous transition      
Kondo problem equivalence to Ising model
Kondo problem fixed points
Kondo problem fugacity
Kondo problem Hamiltonian
Kondo problem poor man's method
Kondo problem scaling      
Kondo problem scaling diagram
Kondo problem scaling equations
Kondo problem space-time scaling
Kondo problem Wilson's numerical solution
Kondo temperature
Koopman's theorem
Kosterlitz — Thouless phase transition
Landau free energy
Lie differential equation
Linked-cluster theorem
Liquid crystals
Liquid crystals nematic
Liquid crystals smectic
localization      
Localization renormalization group
Locator
Luttinger's theorem
Mean-field theory
Measurement theory
Melting
Melting dislocation theory
Migdal's theorem
Molecular orbital method
Nematic liquid crystal      
Nuclear physics
Nuclear physics giant resonance
Order parameter
Ornstein — Zernike
Permanent
Permutation operator
Perturbation theory
Phase transitions
Phase transitions first-order
Phase transitions liquid-gas
Phase transitions second-order
Phase transitions symmetry-breaking
Phase transitions symmetry-nonbreaking
Phasons
Phonons
Phonons frequencies
Plasma mode
Poor man's method
Propagator
Pseudopotential
Quantum electrodynamics      
Quantum electrodynamics infrared divergence      
Quantum liquids      
Quantum solids
Quasiparticles      
Quasiparticles Bose case      
Quasiparticles effective mass      
Relevant scaling variables      
Renormalization group theory
Renormalization group theory crossover
Renormalization group theory poor man's method      
Scaling      
Scaling law      
Scaling poor man's method      
Scattering
Second sound
Self-energy
Sliding conductivity
Smectic liquid crystal
Solid      
Solid anharmonicity      
Solid Debye model      
Solid Einstein model      
Solid relation between Einstein and Debye models
Sound      
Sound second      
Sound zero      
Spin waves      
Stock market      
Stoner enhancement factor      
Suhl — Hakamura force      
Superconductivity      
Superconductivity and density waves      
Superconductivity BCS theory      
Superconductors      
Superconductors Type II      
Superfluid      
Superfluid anisotropic      
Superfluidity      
Superfluidity Landau criterion      
Symmetry group
T-matrix      
Tomasch effect      
Two-dimensional melting      
Ultraviolet catastrophe      
Universality
Valence-bond method
Van der Waals equation
Wannier functions
Wigner solid      
Zero sound
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