Cargando…

Mode-by-mode fluid dynamics for relativistic heavy ion collisions

We propose to study the fluid dynamic propagation of fluctuations in relativistic heavy ion collisions differentially with respect to their azimuthal, radial and longitudinal wavelength. To this end, we introduce a background-fluctuation splitting and a Bessel-Fourier decomposition of the fluctuatin...

Descripción completa

Detalles Bibliográficos
Autores principales: Floerchinger, Stefan, Wiedemann, Urs Achim
Lenguaje:eng
Publicado: 2013
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.physletb.2013.12.025
http://cds.cern.ch/record/1561902
_version_ 1780930705337876480
author Floerchinger, Stefan
Wiedemann, Urs Achim
author_facet Floerchinger, Stefan
Wiedemann, Urs Achim
author_sort Floerchinger, Stefan
collection CERN
description We propose to study the fluid dynamic propagation of fluctuations in relativistic heavy ion collisions differentially with respect to their azimuthal, radial and longitudinal wavelength. To this end, we introduce a background-fluctuation splitting and a Bessel-Fourier decomposition of the fluctuating modes. We demonstrate how the fluid dynamic evolution of realistic events can be build up from the propagation of individual modes. We describe the main elements of this mode-by-mode fluid dynamics, and we discuss its use in the fluid dynamic analysis of heavy ion collisions. As a first illustration, we quantify to what extent only fluctuations of sufficiently large radial wave length contribute to harmonic flow coefficients. We find that fluctuations of short wave length are suppressed not only due to larger dissipative effects, but also due to a geometrical averaging over the freeze-out hyper surface. In this way, our study further substantiates the picture that harmonic flow coefficients give access to a coarse-grained version of the initial conditions for heavy ion collisions, only.
id cern-1561902
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2013
record_format invenio
spelling cern-15619022023-03-14T19:39:57Zdoi:10.1016/j.physletb.2013.12.025http://cds.cern.ch/record/1561902engFloerchinger, StefanWiedemann, Urs AchimMode-by-mode fluid dynamics for relativistic heavy ion collisionsParticle Physics - PhenomenologyWe propose to study the fluid dynamic propagation of fluctuations in relativistic heavy ion collisions differentially with respect to their azimuthal, radial and longitudinal wavelength. To this end, we introduce a background-fluctuation splitting and a Bessel-Fourier decomposition of the fluctuating modes. We demonstrate how the fluid dynamic evolution of realistic events can be build up from the propagation of individual modes. We describe the main elements of this mode-by-mode fluid dynamics, and we discuss its use in the fluid dynamic analysis of heavy ion collisions. As a first illustration, we quantify to what extent only fluctuations of sufficiently large radial wave length contribute to harmonic flow coefficients. We find that fluctuations of short wave length are suppressed not only due to larger dissipative effects, but also due to a geometrical averaging over the freeze-out hyper surface. In this way, our study further substantiates the picture that harmonic flow coefficients give access to a coarse-grained version of the initial conditions for heavy ion collisions, only.We propose to study the fluid dynamic propagation of fluctuations in relativistic heavy ion collisions differentially with respect to their azimuthal, radial and longitudinal wavelength. To this end, we introduce a background-fluctuation splitting and a Bessel–Fourier decomposition of the fluctuating modes. We demonstrate how the fluid dynamic evolution of realistic events can be built up from the propagation of individual modes. We describe the main elements of this mode-by-mode fluid dynamics, and we discuss its use in the fluid dynamic analysis of heavy ion collisions. As a first illustration, we quantify to what extent only fluctuations of sufficiently large radial wave length contribute to harmonic flow coefficients. We find that fluctuations of short wave length are suppressed not only due to larger dissipative effects, but also due to a geometrical averaging over the freeze-out hyper-surface. In this way, our study further substantiates the picture that harmonic flow coefficients give access to a coarse-grained version of the initial conditions for heavy ion collisions, only.We propose to study the fluid dynamic propagation of fluctuations in relativistic heavy ion collisions differentially with respect to their azimuthal, radial and longitudinal wavelength. To this end, we introduce a background-fluctuation splitting and a Bessel-Fourier decomposition of the fluctuating modes. We demonstrate how the fluid dynamic evolution of realistic events can be build up from the propagation of individual modes. We describe the main elements of this mode-by-mode fluid dynamics, and we discuss its use in the fluid dynamic analysis of heavy ion collisions. As a first illustration, we quantify to what extent only fluctuations of sufficiently large radial wave length contribute to harmonic flow coefficients. We find that fluctuations of short wave length are suppressed not only due to larger dissipative effects, but also due to a geometrical averaging over the freeze-out hyper surface. In this way, our study further substantiates the picture that harmonic flow coefficients give access to a coarse-grained version of the initial conditions for heavy ion collisions, only.arXiv:1307.3453CERN-PH-TH-2013-163CERN-PH-TH-2013-163oai:cds.cern.ch:15619022013-07-12
spellingShingle Particle Physics - Phenomenology
Floerchinger, Stefan
Wiedemann, Urs Achim
Mode-by-mode fluid dynamics for relativistic heavy ion collisions
title Mode-by-mode fluid dynamics for relativistic heavy ion collisions
title_full Mode-by-mode fluid dynamics for relativistic heavy ion collisions
title_fullStr Mode-by-mode fluid dynamics for relativistic heavy ion collisions
title_full_unstemmed Mode-by-mode fluid dynamics for relativistic heavy ion collisions
title_short Mode-by-mode fluid dynamics for relativistic heavy ion collisions
title_sort mode-by-mode fluid dynamics for relativistic heavy ion collisions
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1016/j.physletb.2013.12.025
http://cds.cern.ch/record/1561902
work_keys_str_mv AT floerchingerstefan modebymodefluiddynamicsforrelativisticheavyioncollisions
AT wiedemannursachim modebymodefluiddynamicsforrelativisticheavyioncollisions