TY - JOUR
T1 - Centrality dependence of charged hadron and strange hadron elliptic flow from [v]sNN = 200 GeV Au + Au collisions
AU - Abelev, B.I.
AU - Bai, Y.
AU - Benedosso, F.
AU - Botje, M.A.J.
AU - Braidot, E
AU - Grebenyuk, O.
AU - Mischke, A.
AU - Peitzmann, T.
AU - Russcher, M.J.
AU - Snellings, R.J.M.
AU - van der Kolk, N.
AU - van Leeuwen, M.
PY - 2008
Y1 - 2008
N2 - The event azimuthal anisotropy with respect to the reaction plane has been widely studied in order to evaluate
the collective behavior of the matter produced in high-energy nuclear collisions [1, 2, 3]. The initial configuration
space anisotropy is expected to be self-quenched by expansion and reduced by frequent re-scatterings in the hot
and dense medium created in such collisions. The final observed momentum space anisotropies, therefore, carry
information about the early stage collision dynamics [4, 5, 6]. The experimental results of the second harmonic
azimuthal anisotropy, elliptic flow, v2, from Au + Au collisions have demonstrated the development of partonic
collectivity [7, 8, 9, 10]. Further detailed analyses of the hadron mass dependence of v2 suggest that the system
has been in the deconfined state with constituent quark degrees of freedom prior to hadronization [11, 12, 13].
Furthermore, results of multi-strange hadron transverse momentum distributions and v2 indicate that the system
reached thermalization at the partonic stage [14, 15, 16, 17].
AB - The event azimuthal anisotropy with respect to the reaction plane has been widely studied in order to evaluate
the collective behavior of the matter produced in high-energy nuclear collisions [1, 2, 3]. The initial configuration
space anisotropy is expected to be self-quenched by expansion and reduced by frequent re-scatterings in the hot
and dense medium created in such collisions. The final observed momentum space anisotropies, therefore, carry
information about the early stage collision dynamics [4, 5, 6]. The experimental results of the second harmonic
azimuthal anisotropy, elliptic flow, v2, from Au + Au collisions have demonstrated the development of partonic
collectivity [7, 8, 9, 10]. Further detailed analyses of the hadron mass dependence of v2 suggest that the system
has been in the deconfined state with constituent quark degrees of freedom prior to hadronization [11, 12, 13].
Furthermore, results of multi-strange hadron transverse momentum distributions and v2 indicate that the system
reached thermalization at the partonic stage [14, 15, 16, 17].
M3 - Article
SN - 0556-2813
VL - 77
SP - 054901
JO - Physical Review. C, Nuclear physics
JF - Physical Review. C, Nuclear physics
ER -