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Statistical Physics of Complex Systems - 2022

International Centre for Theoretical Sciences via YouTube

Overview

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Explore advanced concepts in statistical physics through this comprehensive conference featuring expert lectures on complex systems, nonequilibrium phenomena, and emergent behaviors. Delve into cutting-edge research topics including hydrodynamic scales of integrable many-body systems, liquid-liquid transitions in materials, thermodynamic uncertainty relations, and nonequilibrium extensions of fundamental thermodynamic laws. Examine transport phenomena in various systems such as activity-driven transport in harmonic chains, biased random walks in random media, and anomalous transport of interacting self-propelled particles. Investigate phase transitions and critical phenomena including active phase separation, motility-induced phase separation, and the statistical mechanics of active matter systems. Study advanced mathematical frameworks for understanding complex systems through topics like local statistics in Coulomb gases, spatial clustering in long-ranged avalanches, and the macroscopic fluctuation theory. Learn about quantum many-body systems including the tilted Fermi-Hubbard model, entanglement dynamics of multiparametric random states, and finite-time quench dynamics in classical systems. Discover novel theoretical approaches to understanding collective behavior, from sandpile models and percolation theory to hyperuniformity and rigidity in disordered systems, providing deep insights into the statistical physics governing complex natural and artificial systems.

Syllabus

Hydrodynamic Scales of Integrable many-body Systems by Herbert Spohn
The liquid-liquid transition in silicon by Srikanth Sastry
Thermodynamic Uncertainty Relations by Supriya Krishnamurthy
Nonequilibrium Extension of the Third Law of Thermodynamics by Christian Maes
Local Drive (a pump or a battery) in Interacting Diffusive Systems by David Mukamel
Activity Driven Transport in Harmonic Chains by Urna Basu
Local Statistics in the 1d-Coulomb Gas: Extreme, Gap and Full-Counting Statistics by Gregory Schehr
Spatial Clustering for Long-Ranged Avalanches and Epidemics by Alberto Rosso
Private Covariance Approximation and Dyson Brownian Motion by Nisheeth Vishnoi
Roll and Stumble: A robust mechanism for efficient and protocol .... by Sabyasachi Bhattacharya
Universality Conjectures For Activated Random Walk by Lionel Levine
Current Fluctuations in an Interacting Active Lattice Gas by Kabir Ramola
Biased Random Walks in Random Media: Drift and Trapping Effects by Mustansir Barma
Anomalous Transport of Interacting Self-Propelled Particles by Punyabrata Pradhan
Hidden Order: Hyperuniformity and Rigidity by Joel Lebowitz
A (Potential) Finite-Time Singularity and Thermalization in the 3D Axisymmetric... by Rahul Pandit
Diffusion, Super-Diffusion and Non-Local Linear Response in Anomalous Transport by Anupam Kundu
Caustic Formation by Active Particles in Flow by Sriram Ramaswamy
Active Phase Separation (In Two Dimensions) by Leticia Cugliandolo
Evolution in Changing Environments and Driven Disordered Systems by Joachim Krug
Elastic Finite Time Singularities in An Active Medium : Emergence of Stress... by Madan Rao
Entanglement Dynamics of Multiparametric Random States: A Single Parametric... by Pragya Shukla
Branching Random Walks with Power Law Steps by Parthanil Roy
Blast and Splash in a Cold Gas by Paul Krapivsky
The Long-Ranged Influence of Disorder on Active Systems by Yariv Kafri
Finite-Time Quench Dynamics in Classical Systems by Kavita Jain
Dispersion in confined and fluctuating systems by David Dean
Unusual Properties of Persistent Active Matter by Chandan Dasgupta
Nonexistence of MIPS phase in One Dimension by Pradeep Kumar Mohanty
An Exact Solution of the Macroscopic Fluctuation Theory by Kirone Mallick
Quantum Sandpile (?): Tilted Fermi-Hubbard Model by David Huse
Non-abelian Sandpile Model by Subhrangshu Sekhar Manna
Gallai-Edmonds Percolation by Kedar Damle
Hidden Order: Hyperuniformity and Rigidity by Joel Lebowitz
Anomalous Collective Diffusion of Interacting Self-propelled Particles by Punyabrata Pradhan
Can We Define Random Close Packing? by Dov Levin

Taught by

International Centre for Theoretical Sciences

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