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Lecture
Statistical Field Theory
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Related lectures (30)
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Local Fields and Correlations in Ising Models
Covers local fields and correlations in Ising models and conformal field theory.
Spherical Symmetry in Statistical Mechanics
Explores spherical symmetry in statistical mechanics and its role in phase transitions.
Simulating the Early Universe: Techniques and Challenges
Covers numerical techniques for simulating the early universe, focusing on gauge invariance and fermions.
Coarse Graining in Statistical Physics
Explores coarse graining in statistical physics, focusing on real space renormalization and the Ising model.
Effective Field Theory: Universal Description at Low Energies
Explores effective field theory, emphasizing its application to the standard model and the hierarchy problem.
Compactified Imaginary Liouville Theory: Scaling Limits and Challenges
Covers compactified imaginary Liouville theory and the scaling limits of loop models, addressing mathematical challenges and future research directions.
Lightcone Conformal Truncation and S-matrix Bootstrap
Delves into lightcone conformal truncation and the S-matrix bootstrap method for quantum field theory computations.
FK-Percolation and the Six-Vertex Model: Critical Phenomena
Covers the transition from the six-vertex model to FK-percolation, focusing on critical phenomena and phase transitions in two-dimensional systems.
Phase Transitions in Statistical Mechanics
Covers phase transitions, correlation length, critical exponents, and universality in Statistical Mechanics.
Phase Transition in Ising Model
Explores phase transitions in the Ising model, discussing equilibrium states, magnetization, and critical points.