We present a study of the heavy-flavor dynamics in nucleus–nucleus collisions. The initial (hard) production of c and b quarks is taken from NLO pQCD predictions. The presence of a hot medium (a Quark-Gluon Plasma described by hydrodynamics) affects the final spectra of open-charm (beauty) hadrons and their decay electrons with respect to what found in pp collisions. The propagation of c and b quarks in the plasma is based on a picture of multiple uncorrelated random collisions, described by a relativistic Langevin equation. A microscopic evaluation of the transport coefficients is provided within a pQCD approach (with proper resummation of medium effects). Results for the final spectra of heavy-flavor hadrons and decay-electrons are given, with particular emphasis on RAA and v2.

Heavy quarks in nucleus-nucleus collisions: from RHIC to LHC.

BERAUDO, ANDREA;ALBERICO, Wanda Maria;MOLINARI, Alfredo;NARDI, Marzia;
2011-01-01

Abstract

We present a study of the heavy-flavor dynamics in nucleus–nucleus collisions. The initial (hard) production of c and b quarks is taken from NLO pQCD predictions. The presence of a hot medium (a Quark-Gluon Plasma described by hydrodynamics) affects the final spectra of open-charm (beauty) hadrons and their decay electrons with respect to what found in pp collisions. The propagation of c and b quarks in the plasma is based on a picture of multiple uncorrelated random collisions, described by a relativistic Langevin equation. A microscopic evaluation of the transport coefficients is provided within a pQCD approach (with proper resummation of medium effects). Results for the final spectra of heavy-flavor hadrons and decay-electrons are given, with particular emphasis on RAA and v2.
2011
Excited QCD 2011
Les Houches, France
20-25 Feb 2011
4
653
657
http://th-www.if.uj.edu.pl/acta/sup4/abs/s4p0653.htm
A. Beraudo; W.M. Alberico; A. De Pace; A. Molinari; M. Monteno; M. Nardi; F. Prino
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/96148
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