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200GeV AuAu碰撞中前快度区的微分椭圆流
引用本文:S.J.Sanders. 200GeV AuAu碰撞中前快度区的微分椭圆流[J]. 中国物理 C, 2007, 31(12): 1137-1140
作者姓名:S.J.Sanders
作者单位:The University
基金项目:Supported by the 0ffice of Nuclear Physics of the U.S. Department of Energy under contract DE-FG03-96ER40981
摘    要:Identified particle elliptic flow results are presented for the Au+Au reaction at sNN=200GeV as a function of transverse momentum and pseudorapidity. Data at pseudorapidities η≈0,1, and 3.4 were obtained using the two BRAHMS spectrometers. Differential v2 (η,pt) values for a given particle type arefound to be essentially constant over the covered pseudorapidity range, in contrast to the integral v2 values which have previously been observed to decrease at forward rapidities. A softening of the particle spectra at forward angles is found to account for at least part of the integral v2 falloff. The data are found to be consistent with existing constituent quark scaling systematics.

关 键 词:elliptic flow  rapidity dependence  relativistic heavy-ion reactions
收稿时间:2007-07-17
修稿时间:2007-06-25

Differential Elliptic Flow at Forward Rapidity in 200GeV AuAu Collisions
S.J. Sanders. Differential Elliptic Flow at Forward Rapidity in 200GeV AuAu Collisions[J]. High Energy Physics and Nuclear Physics, 2007, 31(12): 1137-1140
Authors:S.J. Sanders
Abstract:Identified particle elliptic flow results are presented for the Au Au reaction at (√SNN) = 200GeV as a function of transverse momentum and pseudorapidity. Data at pseudorapidities η≈ 0, 1, and 3.4 were obtained using the two BRAHMS spectrometers. Differential v2(η, pt) values for a given particle type are found to be essentially constant over the covered pseudorapidity range, in contrast to the integral v2 values which have previously been observed to decrease at forward rapidities. A softening of the particle spectra at forward angles is found to account for at least part of the integral v2 falloff. The data are found to be consistent with existing constituent quark scaling systematics.
Keywords:elliptic flow  rapidity dependence  relativistic heavy-ion reactions
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