An evidence of triple kinetic freezeout scenario observed in all centrality intervals in Cu-Cu, Au-Au and Pb-Pb collisions at high energies.

M. Waqas, G. Peng, Fu-Hu Liu
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引用次数: 2

Abstract

Transverse momentum spectra of $\pi^+$, $K^+$, $p$, $K^0_s$, $\Lambda$, $\Xi$ or $\bar\Xi^+$ and $\Omega$ or $\bar\Omega^+$ or $\Omega+\bar\Omega$ in Copper-Copper (Cu-Cu), Gold-Gold (Au-Au) and Lead-Lead (Pb-Pb) collisions at 200 GeV, 62.4 GeV and 2.76 TeV respectively, are analyzed in different centrality bins by the blast wave model with Tsallis statistics. The model results are approximately in agreement with the experimental data measured by BRAHMS, STAR and ALICE Collaborations in special transverse momentum ranges. Kinetic freeze out temperature, transverse flow velocity and kinetic freezeout volume are extracted from the transverse momentum spectra of the particles. It is observed that $\bar\Xi^+$ and $\Omega$ or $\bar\Omega^+$ or $\Omega+\bar\Omega$ have larger kinetic freezeout temperature followed by $K^+$, $K^0_s$ and $\Lambda$ than $\pi^+$ and $p$ due to smaller reaction cross-sections of multi-strange and strange particles than non-strange particles. The present work reveals the scenario of triple kinetic freezeout in collisions at BRAHMS, STAR and ALICE Collaborations, however the transverse flow velocity and kinetic freezeout volume are mass dependent and they decrease with the increasing rest mass of the particle. In addition, the kinetic freezeout temperature, transverse flow velocity and kinetic freezeout volume are decreasing from central to peripheral collisions while the parameter q increase from central to peripheral collisions, indicating the approach of quick equilibrium in the central collisions. Besides, the kinetic freezeout temperature and kinetic freezeout volume are observed to be larger in larger collision system which shows its dependence on the size of the interacting system, while transverse flow velocity increase with increasing energy.
在高能Cu-Cu、Au-Au和Pb-Pb碰撞中,在所有中心间隔观察到三重动力学冻结情景的证据。
的横向动量谱 $\pi^+$, $K^+$, $p$, $K^0_s$, $\Lambda$, $\Xi$ 或 $\bar\Xi^+$ 和 $\Omega$ 或 $\bar\Omega^+$ 或 $\Omega+\bar\Omega$ 利用Tsallis统计的爆炸波模型,对200 GeV、62.4 GeV和2.76 TeV下铜-铜(Cu-Cu)、金-金(Au-Au)和铅-铅(Pb-Pb)碰撞在不同的中心性仓中进行了分析。在特殊的横向动量范围内,模型结果与BRAHMS, STAR和ALICE合作测量的实验数据大致一致。从粒子的横向动量谱中提取了动态冻出温度、横向流速和动态冻出体积。据观察, $\bar\Xi^+$ 和 $\Omega$ 或 $\bar\Omega^+$ 或 $\Omega+\bar\Omega$ 是否有更大的动态冻结温度 $K^+$, $K^0_s$ 和 $\Lambda$ 比 $\pi^+$ 和 $p$ 由于多奇异粒子和奇异粒子的反应截面比非奇异粒子小。目前的工作揭示了BRAHMS、STAR和ALICE合作的碰撞中三重动力学冻结的情况,然而横向流动速度和动力学冻结体积与质量有关,它们随着粒子静止质量的增加而减小。动力学冻结温度、横向流动速度和动力学冻结体积从中心碰撞到外围碰撞呈减小趋势,而参数q从中心碰撞到外围碰撞呈增大趋势,表明中心碰撞接近快速平衡。此外,在较大的碰撞体系中,动力学冻结温度和动力学冻结体积较大,这与相互作用体系的大小有关,而横向流动速度随着能量的增加而增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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