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Turbulent fluctuations around Bjorken flow

We study the evolution of local event-by-event deviations from smooth average fluid dynamic fields, as they can arise in heavy ion collisions from the propagation of fluctuating initial conditions. Local fluctuations around Bjorken flow are found to be governed by non-linear equations whose solution...

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Detalles Bibliográficos
Autores principales: Floerchinger, Stefan, Wiedemann, Urs Achim
Lenguaje:eng
Publicado: 2011
Materias:
Acceso en línea:https://dx.doi.org/10.1088/0954-3899/38/12/124171
http://cds.cern.ch/record/1362188
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author Floerchinger, Stefan
Wiedemann, Urs Achim
author_facet Floerchinger, Stefan
Wiedemann, Urs Achim
author_sort Floerchinger, Stefan
collection CERN
description We study the evolution of local event-by-event deviations from smooth average fluid dynamic fields, as they can arise in heavy ion collisions from the propagation of fluctuating initial conditions. Local fluctuations around Bjorken flow are found to be governed by non-linear equations whose solutions can be characterized qualitatively in terms of Reynolds numbers. Perturbations at different rapidities decouple quickly, and satisfy (after suitable coordinate transformations) an effectively two-dimensional Navier-Stokes equation of non-relativistic form. We discuss the conditions under which non-linearities in these equations cannot be neglected and turbulent behavior is expected to set in.
id cern-1362188
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2011
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spelling cern-13621882023-03-15T19:12:19Zdoi:10.1088/0954-3899/38/12/124171http://cds.cern.ch/record/1362188engFloerchinger, StefanWiedemann, Urs AchimTurbulent fluctuations around Bjorken flowNuclear Physics - TheoryWe study the evolution of local event-by-event deviations from smooth average fluid dynamic fields, as they can arise in heavy ion collisions from the propagation of fluctuating initial conditions. Local fluctuations around Bjorken flow are found to be governed by non-linear equations whose solutions can be characterized qualitatively in terms of Reynolds numbers. Perturbations at different rapidities decouple quickly, and satisfy (after suitable coordinate transformations) an effectively two-dimensional Navier-Stokes equation of non-relativistic form. We discuss the conditions under which non-linearities in these equations cannot be neglected and turbulent behavior is expected to set in.We study the evolution of local event-by-event deviations from smooth average fluid dynamic fields, as they can arise in heavy ion collisions from the propagation of fluctuating initial conditions. Local fluctuations around Bjorken flow are found to be governed by non-linear equations whose solutions can be characterized qualitatively in terms of Reynolds numbers. Perturbations at different rapidities decouple quickly, and satisfy (after suitable coordinate transformations) an effectively two-dimensional Navier-Stokes equation of non-relativistic form. We discuss the conditions under which non-linearities in these equations cannot be neglected and turbulent behavior is expected to set in.arXiv:1106.5227oai:cds.cern.ch:13621882011-06-28
spellingShingle Nuclear Physics - Theory
Floerchinger, Stefan
Wiedemann, Urs Achim
Turbulent fluctuations around Bjorken flow
title Turbulent fluctuations around Bjorken flow
title_full Turbulent fluctuations around Bjorken flow
title_fullStr Turbulent fluctuations around Bjorken flow
title_full_unstemmed Turbulent fluctuations around Bjorken flow
title_short Turbulent fluctuations around Bjorken flow
title_sort turbulent fluctuations around bjorken flow
topic Nuclear Physics - Theory
url https://dx.doi.org/10.1088/0954-3899/38/12/124171
http://cds.cern.ch/record/1362188
work_keys_str_mv AT floerchingerstefan turbulentfluctuationsaroundbjorkenflow
AT wiedemannursachim turbulentfluctuationsaroundbjorkenflow