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Flash-5: Novel relaxation time approximation to the relativistic Boltzmann equation

<!--HTML-->In 1974, J. L. Anderson and H. R. Witting proposed the Relaxation Time Approximation (RTA) to the relativistic Boltzmann equation [1], following all the development already made in the non-relativistic case by Bhatnagar, Gross and Krook [2]. This approximation is used in several fie...

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Autor principal: Soares Rocha, Gabriel
Lenguaje:eng
Publicado: 2021
Materias:
Acceso en línea:http://cds.cern.ch/record/2749843
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author Soares Rocha, Gabriel
author_facet Soares Rocha, Gabriel
author_sort Soares Rocha, Gabriel
collection CERN
description <!--HTML-->In 1974, J. L. Anderson and H. R. Witting proposed the Relaxation Time Approximation (RTA) to the relativistic Boltzmann equation [1], following all the development already made in the non-relativistic case by Bhatnagar, Gross and Krook [2]. This approximation is used in several fields of physics and has been recently employed to study the hydrodynamization of the matter produced in ultrarelativistic heavy ion collisions [3]. However, we shall demonstrate that the approximation proposed by Anderson and Witting contains basic flaws, not being consistent with fundamental properties of the collision operator. The main issue is that this approximation is in general inconsistent with microscopic and macroscopic conservation laws, which leads to several problems when trying to model relativistic gases using energy dependent relaxation times or general matching conditions. In this contribution, we propose a new relaxation time approximation which fixes these basic flaws. We then show how such a new formulation of the approximation affects the expression of transport coefficients and the energy dependence of the nonequilibrium single particle distribution function.
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institution Organización Europea para la Investigación Nuclear
language eng
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spelling cern-27498432022-11-02T22:26:07Zhttp://cds.cern.ch/record/2749843engSoares Rocha, GabrielFlash-5: Novel relaxation time approximation to the relativistic Boltzmann equationInitial Stages 2021Conferences<!--HTML-->In 1974, J. L. Anderson and H. R. Witting proposed the Relaxation Time Approximation (RTA) to the relativistic Boltzmann equation [1], following all the development already made in the non-relativistic case by Bhatnagar, Gross and Krook [2]. This approximation is used in several fields of physics and has been recently employed to study the hydrodynamization of the matter produced in ultrarelativistic heavy ion collisions [3]. However, we shall demonstrate that the approximation proposed by Anderson and Witting contains basic flaws, not being consistent with fundamental properties of the collision operator. The main issue is that this approximation is in general inconsistent with microscopic and macroscopic conservation laws, which leads to several problems when trying to model relativistic gases using energy dependent relaxation times or general matching conditions. In this contribution, we propose a new relaxation time approximation which fixes these basic flaws. We then show how such a new formulation of the approximation affects the expression of transport coefficients and the energy dependence of the nonequilibrium single particle distribution function.oai:cds.cern.ch:27498432021
spellingShingle Conferences
Soares Rocha, Gabriel
Flash-5: Novel relaxation time approximation to the relativistic Boltzmann equation
title Flash-5: Novel relaxation time approximation to the relativistic Boltzmann equation
title_full Flash-5: Novel relaxation time approximation to the relativistic Boltzmann equation
title_fullStr Flash-5: Novel relaxation time approximation to the relativistic Boltzmann equation
title_full_unstemmed Flash-5: Novel relaxation time approximation to the relativistic Boltzmann equation
title_short Flash-5: Novel relaxation time approximation to the relativistic Boltzmann equation
title_sort flash-5: novel relaxation time approximation to the relativistic boltzmann equation
topic Conferences
url http://cds.cern.ch/record/2749843
work_keys_str_mv AT soaresrochagabriel flash5novelrelaxationtimeapproximationtotherelativisticboltzmannequation
AT soaresrochagabriel initialstages2021