Related lectures (47)
Multiferroics: Ferroelectrics
Explores the properties of ferroelectric materials and the challenges in creating materials with both ferroelectric and ferromagnetic properties.
Disorder-Controlled Charge Transport
Explores disorder-controlled transport, polaronic transport, and charge carrier behavior in materials.
Potts Model: Introduction
Introduces the Potts model, a generalization of the Ising model used in statistical mechanics to study phase transitions.
Markov Chain Monte Carlo: Detailed Balance & Neural Networks
Covers Markov chain Monte Carlo and neural networks' role in quantum states representation and ground state approximation for frustrated spins systems.
Replica Field Theory: Cavity and Replica Method
Explains the Replica Field Theory in RFIM, emphasizing the Cavity and Replica methods and the exponential dominance of certain values.
Graph Coloring: Entropy and Free Energy
Explains entropy and free energy computation in graph coloring.
Spin Glass Model: Replica Method
Explains the Replica Method for spin glass models and their factorization assumptions.
Experimental Techniques: Neutron Scattering - Elastic Scattering
Covers experimental techniques in neutron scattering, focusing on magnetic elastic scattering.
Disorder-Controlled Charge Transport
Explores criteria for transport in materials, charge transfer, random walk, disorder models, temperature effects, and high charge densities.
Combinatorial Optimization: Simulated Annealing
Explores combinatorial optimization using simulated annealing to find ground states in frustrated systems and address challenges in satisfying all interactions simultaneously.

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