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Self-organized criticality
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Related lectures (31)
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Ising Model: Critical Behavior and Universal Classes
Explores the Ising model's critical behavior, universal classes, equilibrium properties, and numerical simulations.
Cavity method and Approximate Message Passing
Explores the cavity method, Approximate Message Passing, and phase transitions in probabilistic models.
Conformal Field Theories: Review and Scaling
Covers statistical mechanics, conformal field theories, and critical exponents, emphasizing the importance of universality and renormalization group flows.
GFF Convergence and Six Vertex Models: Phase Transitions
Covers GFF convergence and the six vertex model's phase transitions.
Phase Transitions: Connectivity in Random Graphs
Delves into phase transitions in random graphs, emphasizing the emergence of a giant component with varying connectivity.
Potts Model: Introduction
Introduces the Potts model, a generalization of the Ising model used in statistical mechanics to study phase transitions.
Complex Systems: Critical Phenomena
Explores critical phenomena in complex systems, including stochastic objects, percolation, and combinatorial optimization.
Phase Transitions: Percolation in 2D Networks
Explores phase transitions through percolation in 2D networks.
Currents in the O(n) Model: Conformal Field Theory Insights
Covers the O(n) model on the hexagonal lattice and its currents.
Block Spin Renormalization
Introduces block spin renormalization and scaling variables in the Ising model, focusing on RG fixed points and critical exponents.
Introduction to 3-State Ising Model
Covers the theoretical background and applications of the 3-state Ising model.
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