Non-perturbative Renormalization Group Approach to Some Out-of-Equilibrium Systems

Non-perturbative Renormalization Group Approach to Some Out-of-Equilibrium Systems
Author :
Publisher : Springer Nature
Total Pages : 217
Release :
ISBN-10 : 9783030398712
ISBN-13 : 3030398714
Rating : 4/5 (714 Downloads)

Book Synopsis Non-perturbative Renormalization Group Approach to Some Out-of-Equilibrium Systems by : Malo Tarpin

Download or read book Non-perturbative Renormalization Group Approach to Some Out-of-Equilibrium Systems written by Malo Tarpin and published by Springer Nature. This book was released on 2020-03-19 with total page 217 pages. Available in PDF, EPUB and Kindle. Book excerpt: This thesis presents the application of non-perturbative, or functional, renormalization group to study the physics of critical stationary states in systems out-of-equilibrium. Two different systems are thereby studied. The first system is the diffusive epidemic process, a stochastic process which models the propagation of an epidemic within a population. This model exhibits a phase transition peculiar to out-of-equilibrium, between a stationary state where the epidemic is extinct and one where it survives. The present study helps to clarify subtle issues about the underlying symmetries of this process and the possible universality classes of its phase transition. The second system is fully developed homogeneous isotropic and incompressible turbulence. The stationary state of this driven-dissipative system shows an energy cascade whose phenomenology is complex, with partial scale-invariance, intertwined with what is called intermittency. In this work, analytical expressions for the space-time dependence of multi-point correlation functions of the turbulent state in 2- and 3-D are derived. This result is noteworthy in that it does not rely on phenomenological input except from the Navier-Stokes equation and that it becomes exact in the physically relevant limit of large wave-numbers. The obtained correlation functions show how scale invariance is broken in a subtle way, related to intermittency corrections.


Non-perturbative Renormalization Group Approach to Some Out-of-Equilibrium Systems Related Books

Non-perturbative Renormalization Group Approach to Some Out-of-Equilibrium Systems
Language: en
Pages: 217
Authors: Malo Tarpin
Categories: Science
Type: BOOK - Published: 2020-03-19 - Publisher: Springer Nature

DOWNLOAD EBOOK

This thesis presents the application of non-perturbative, or functional, renormalization group to study the physics of critical stationary states in systems out
Renormalization Group Analysis of Nonequilibrium Phase Transitions in Driven Disordered Systems
Language: en
Pages: 156
Authors: Taiki Haga
Categories: Science
Type: BOOK - Published: 2019-01-24 - Publisher: Springer

DOWNLOAD EBOOK

This book investigates phase transitions and critical phenomena in disordered systems driven out of equilibrium. First, the author derives a dimensional reducti
Renormalization Group and Effective Field Theory Approaches to Many-Body Systems
Language: en
Pages: 356
Authors: Achim Schwenk
Categories: Science
Type: BOOK - Published: 2012-06-25 - Publisher: Springer

DOWNLOAD EBOOK

There have been many recent and important developments based on effective field theory and the renormalization group in atomic, condensed matter, nuclear and hi
Out-of-Equilibrium Physics of Correlated Electron Systems
Language: en
Pages: 190
Authors: Roberta Citro
Categories: Technology & Engineering
Type: BOOK - Published: 2018-07-26 - Publisher: Springer

DOWNLOAD EBOOK

This book is a wide-ranging survey of the physics of out-of-equilibrium systems of correlated electrons, ranging from the theoretical, to the numerical, computa
Strongly Interacting Quantum Systems out of Equilibrium
Language: en
Pages: 578
Authors: Thierry Giamarchi
Categories: Science
Type: BOOK - Published: 2016-07-07 - Publisher: Oxford University Press

DOWNLOAD EBOOK

Over the last decade new experimental tools and theoretical concepts are providing new insights into collective nonequilibrium behavior of quantum systems. The