在$\sqrt{s_{rm NN}}$ = 5.44 TeV的Xe-Xe对撞中测量(反)核子的产生和椭圆流

ALICE Collaboration
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引用次数: 0

摘要

在Xe$-$Xe对撞中,在每个核子对的质量中心能量为$\sqrt{s_{\rm NN}}$=5.44TeV的条件下,测量了(反)氘核和(反)$^3$He在快速度范围$ |y| < $ 0.5中的产生量,它们是横动量和事件多倍性的函数。测量了凝聚参数 $B_2$ 和 $B_3$,它们是每个核子反向动量的函数。报告了(反)氘核和(反)$^3$He产率与(反)质子和质子产率之比,作为平均带电粒子倍性密度的函数,并与统计强子化模型(SHM)的两种实现方法和凝聚预测进行了比较。在 Xe$-$Xe 对撞中首次测量了(反)氘核的椭圆流,并显示出与在 Pb$-$Pb 对撞中已经观测到的相似特征,即低横动量下的质量排序和中间横动量下的介子$-重子分组。原子核的产生对碰撞中产生的系统的化学冻结温度特别敏感,而化学冻结温度是从基于大规范组合的热拟合中提取的,这是首次在 Xe$-$X 对撞中包括轻原子核和轻味强子。在Xe$-$Xe对撞中提取的化学冻结温度$T_{\rm chem}$ =(154.2 $\pm$ 1.1) MeV与在Pb$-$Pb对撞中观测到的温度相似,并且接近晶格QCD计算所预测的交叉温度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Measurement of the production and elliptic flow of (anti)nuclei in Xe-Xe collisions at $\sqrt{s_{\rm NN}}$ = 5.44 TeV
Measurements of (anti)deuteron and (anti)$^3$He production in the rapidity range $ |y| < $ 0.5 as a function of the transverse momentum and event multiplicity in Xe$-$Xe collisions at a center-of-mass energy per nucleon$-$nucleon pair of $\sqrt{s_{\rm NN}}$ = 5.44 TeV are presented. The coalescence parameters $B_2$ and $B_3$ are measured as a function of the transverse momentum per nucleon. The ratios between (anti)deuteron and (anti)$^3$He yields and those of (anti)protons and pions are reported as a function of the mean charged-particle multiplicity density, and compared with two implementations of the statistical hadronization model (SHM) and with coalescence predictions. The elliptic flow of (anti)deuterons is measured for the first time in Xe$-$Xe collisions and shows features similar to those already observed in Pb$-$Pb collisions, i.e., the mass ordering at low transverse momentum and the meson$-$baryon grouping at intermediate transverse momentum. The production of nuclei is particularly sensitive to the chemical freeze-out temperature of the system created in the collision, which is extracted from a grand-canonical-ensemble-based thermal fit, performed for the first time including light nuclei along with light-flavor hadrons in Xe$-$Xe collisions. The extracted chemical freeze-out temperature $T_{\rm chem}$ = (154.2 $\pm$ 1.1) MeV in Xe$-$Xe collisions is similar to that observed in Pb$-$Pb collisions and close to the crossover temperature predicted by lattice QCD calculations.
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