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Yeomans J.M. — Statistical Mechanics of Phase Transitions
Yeomans J.M. — Statistical Mechanics of Phase Transitions



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Название: Statistical Mechanics of Phase Transitions

Автор: Yeomans J.M.

Аннотация:

Recent developments have led to a good understanding of universality: why phase transitions in systems as diverse as magnets, fluids, liquid crystals, and superconductors can be brought under the same theoretical umbrella and accurately described by simple models. This book describes the physics underlying universality and then lays out the theoretical approaches now available for studying phase transitions. Traditional techniques, mean-field theory, series expansions, and the transfer matrix, are described; the Monte Carlo method is covered; and two chapters are devoted to the renormalization group which led to a breakthrough in the field. The book will be useful as a textbook for a course in phase transitions, as an introduction for graduate students undertaking research in related fields, and as an overview for scientists in other disciplines who work with phase transitions but who are not aware of the current tools of theoretical physics.


Язык: en

Рубрика: Физика/

Статус предметного указателя: Готов указатель с номерами страниц

ed2k: ed2k stats

Год издания: 1992

Количество страниц: 153

Добавлена в каталог: 14.03.2008

Операции: Положить на полку | Скопировать ссылку для форума | Скопировать ID
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Предметный указатель
Phase transition, first order      1 21
Phase transition, higher order      22
Phase transition, second order      22
Phase transition, types of      5
Physisorption, hydrogen on iron      39 ff. 48
Physisorption, krypton on graphite      41 ff.
Polymers, Monte Carlo for      103
Potts model, q-state      41 ff.
Potts model, q-state, exponents in two-dimensions      46
Potts model, q-state, low temperature series      93
Potts model, q-state, renormalization group      136
Potts model, q-state, transfer matrix      74
Power law decay of correlations      20 22 45
Power series expansions      79 ff. (see also “Series expansions”)
Pressure      18
q-state Potts model      see “Potts model”
Quantum models      43
Radius of convergence      80 88
Random numbers in Monte Carlo simulation      100
Ratio method of series analysis      89
Real space renormalization group      13
Real space renormalization group, block-spin      13 136
Real space renormalization group, decimation      124 ff. 132
Real space renormalization group, Migdal — Kadanoff      141
Real space renormalization group, Monte Carlo      139
Real space renormalization group, one-dimensional Ising model      124 ff.
Real space renormalization group, two-dimensional Ising model      132 ff.
Real space renormalization group, variational      136
Recursion equations      108 ff.
Recursion equations, $\epsilon$-expansion      140 144
Recursion equations, example      113
Recursion equations, one-dimensional Ising model      124
Recursion equations, one-dimensional spin-1 Ising model      142
Recursion equations, spin-independent term      127
Reduced hamiltonian      106
Reduced temperature      25 89
Reduced temperature as linear scaling field      116
Relevant variable      110
Relevant variable for one-dimensional Ising model      129
Relevant variable, example      113
Renormalization group      13 105
Renormalization group, definition      106 ff.
Renormalization group, implementations      124 ff. (see also “Real-space renormalization group” “Momentum-space
Rushbrooke inequality      29
Scale change      see “Scale factor”
Scale factor      14 106 109
Scale factor and conformal invariance      120
Scale invariance      10 108
Scaled variables      118
Scaling      106 ff. 115
Scaling fields, example      113
Scaling fields, linear      110 115
Scaling regime      120
Scaling, and critical exponents      115 ff.
Scaling, correlation function      108 117
Scaling, correlation length      108 117
Scaling, free energy      107 115
Scaling, Griffith’s form      123
Scaling, lengths      107
Scaling, magnetization      118
Scaling, momenta      108
Scaling, one-dimensional Ising model      123 129
Scaling, partition function      107
Second order phase transition      22
Series expansions      79 ff.
Series expansions, accuracy      85
Series expansions, analysis      88 ff.
Series expansions, high temperature      80 ff.
Series expansions, low temperature      85 ff.
Series expansions, radius of convergence      80 88
Series expansions, validity      80
Short-range order      10
Singular part of free energy      115
Singular part of free energy, one-dimensional Ising model      129
Singular part of free energy, scaling      115 ff.
Soaps      7
Solid-on-solid model      77
Specific heat      1 3 17 18 25
Specific heat, exponent      26 27
Spin rescaling factor      108 117
Spin rescaling factor, wrong in decimation      136
Spin variable      8
Spin-1 Ising model      41 49
Spin-1 Ising model, transfer matrix      75
Spin-1/2 Ising model      see “Ising model”
Spin-flip      86
Spin-spin correlation function      see “Correlation function”
Spontaneous magnetization      4 17 24
Statistical mechanics      15 ff.
Structural phase transition      5
Substitutional disorder      36
Superconductor      5
Superfluid      5
Surfactants      7
susceptibility      4 17 21 24
Susceptibility, exponent      26
Symmetry of order parameter      27 45
Thermodynamic limit      67 71
Thermodynamics      15 ff.
Thermodynamics, first law      16
Topological disorder      36
Trace      68
Trajectories in parameter space      110
Trajectories, example      113
Trajectory sum      131 144
Transfer matrix      67 ff. 121
Transfer matrix, and correlation function      70
Transfer matrix, and correlation length      70
Transfer matrix, and decimation      127 141
Transfer matrix, and free energy      69
Transfer matrix, and partition function      68
Transfer matrix, chiral clock model      75
Transfer matrix, complex eigenvalues      75
Transfer matrix, Ising model with second neighbour interactions      76
Transfer matrix, one-dimensional Ising model      72
Transfer matrix, Potts model      74
Transfer matrix, spin-1 Ising model      75
Transition probability      96 97 99
Tricritical fixed point      137
Tricritical point      41
Triple line      41
Two-dimensional Ising model      see “Ising model two-dimensional”
Two-phase coexistence      24
Two-state system      36
Uniaxial anisotropy      29
Universality      27 ff. 45 112 135 140
Upper critical dimension      141
van der Waals theory      60
Van Vleck      44
Variational renormalization group      136
Weiss theory      61
Wilson, K.G.      35 106
X-Y model      43
X-Y model, three-dimensional exponents      46
Zero-field magnetization      see “Magnetization”
Zero-temperature phase transition      35 73 92
1 2
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