Stochastic Interacting Systems Contact Voter And Exclusion Processes


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Stochastic Interacting Systems: Contact, Voter and Exclusion Processes


Stochastic Interacting Systems: Contact, Voter and Exclusion Processes

Author: Thomas M. Liggett

language: en

Publisher: Springer Science & Business Media

Release Date: 1999-08-13


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Interactive particle systems is a branch of probability theory with close connections to mathematical physics and mathematical biology. This book takes three of the most important models in the area, and traces advances in our understanding of them since 1985. It explains and develops many of the most useful techniques in the field.

Stochastic Interacting Systems in Life and Social Sciences


Stochastic Interacting Systems in Life and Social Sciences

Author: Nicolas Lanchier

language: en

Publisher: Walter de Gruyter GmbH & Co KG

Release Date: 2024-07-01


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This volume provides an overview of two of the most important examples of interacting particle systems, the contact process, and the voter model, as well as their many variants introduced in the past 50 years. These stochastic processes are organized by domains of application (epidemiology, population dynamics, ecology, genetics, sociology, econophysics, game theory) along with a flavor of the mathematical techniques developed for their analysis.

Stochastic Dynamics Out of Equilibrium


Stochastic Dynamics Out of Equilibrium

Author: Giambattista Giacomin

language: en

Publisher: Springer

Release Date: 2019-06-30


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Stemming from the IHP trimester "Stochastic Dynamics Out of Equilibrium", this collection of contributions focuses on aspects of nonequilibrium dynamics and its ongoing developments. It is common practice in statistical mechanics to use models of large interacting assemblies governed by stochastic dynamics. In this context "equilibrium" is understood as stochastically (time) reversible dynamics with respect to a prescribed Gibbs measure. Nonequilibrium dynamics correspond on the other hand to irreversible evolutions, where fluxes appear in physical systems, and steady-state measures are unknown. The trimester, held at the Institut Henri Poincaré (IHP) in Paris from April to July 2017, comprised various events relating to three domains (i) transport in non-equilibrium statistical mechanics; (ii) the design of more efficient simulation methods; (iii) life sciences. It brought together physicists, mathematicians from many domains, computer scientists, as well as researchers working at the interface between biology, physics and mathematics. The present volume is indispensable reading for researchers and Ph.D. students working in such areas.