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Random Field Ising Model: Overview and Analysis
Provides an in-depth analysis of the Random Field Ising Model, covering model description, free entropy, and mean field algorithm.
Statistical Models: Unitary Conformal Field Theories
Covers the connection between statistical models and unitary conformal field theories, focusing on critical points and the role of local fields.
Phase Transitions in the Ising Model
Explores phase transitions in the Ising model, mean magnetization, susceptibility, critical exponents, and the universality of critical exponents.
Statistical Field Theory
Covers the basics of statistical field theory, focusing on Ising models and the Ginsburg-Landau theory.
Turbulence in Astrophysics: Reynolds Decomposition
Covers the modeling of fluid instabilities with linear perturbation theory and explores the origin of unpredictability in turbulence through the Navier-Stokes equations.
Belief Propagation in Random Graphs
Explores belief propagation in random graphs and Bethe free entropy.
The Curie-Weiss Model: Overview and Applications
Covers the Curie-Weiss model, discussing its theoretical foundations and practical applications in physical systems.
Transition Probabilities in Perturbation Theory
Explores transition probabilities in first-order perturbation theory with time-dependent perturbations and disturbance theory.
Renormalization Group in Field Theory
Explores the Renormalization Group in field theory, discussing scaling functions, critical exponents, and Gaussian fixed points.
Local Fields and Correlations in Ising Models
Covers local fields and correlations in Ising models and conformal field theory.