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"Table 304" of "Measurement of angular and momentum distributions of charged particles within and around jets in Pb+Pb and $pp$ collisions at $\sqrt{s_{\mathrm{NN}}} = 5.02$ TeV with the ATLAS detector"

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Mendeley Data2024-06-25 更新2024-06-27 收录
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https://www.hepdata.net/record/104327
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CERN-LHC. Studies of the fragmentation of jets into charged particles in heavy-ion collisions can provide information about the mechanism of jet-quenching by the hot and dense QCD matter created in such collisions, the quark-gluon plasma. This paper presents a measurement of the angular distribution of charged particles around the jet axis in sNN=5.02 TeV Pb+Pb and pp collisions, using the ATLAS detector at the LHC. The Pb+Pb and pp data sets have integrated luminosities of 0.49 nb−1 and 25 pb−1, respectively. The measurement is performed for jets reconstructed with the anti-kt algorithm with radius parameter R=0.4 and is extended to an angular distance of r=0.8 from the jet axis. Results are presented as a function of Pb+Pb collision centrality and distance from the jet axis for charged particles with transverse momenta in the 1−63 GeV range, matched to jets with transverse momenta in the 126−316 GeV range and an absolute value of jet rapidity of less than 1.7. Modifications to the measured distributions are quantified by taking a ratio to the measurements in pp collisions. Yields of charged particles with transverse momenta below 4 GeV are observed to be increasingly enhanced as a function of angular distance from the jet axis, reaching a maximum at r=0.6. Charged particles with transverse momenta above 4 GeV have an enhanced yield in Pb+Pb collisions in the jet core for angular distances up to r=0.05 from the jet axis, with a suppression at larger distances.

欧洲核子研究中心大型强子对撞机(CERN-LHC)。针对重离子碰撞中喷注碎裂为带电粒子的过程开展研究,可为此类碰撞中产生的高温致密量子色动力学(Quantum Chromodynamics, QCD)物质——夸克-胶子等离子体(quark-gluon plasma)引发的喷注淬火机制提供关键实验信息。 本文利用大型强子对撞机(LHC)上的ATLAS探测器(ATLAS detector),对质心系能量√s_NN=5.02太电子伏特(TeV)的铅-铅(Pb+Pb)与质子-质子(pp)碰撞中,带电粒子围绕喷注轴的角分布进行了测量。其中铅-铅与质子-质子数据集的积分亮度分别为0.49纳靶恩的倒数(nb⁻¹)与25皮靶恩的倒数(pb⁻¹)。 本次测量针对采用anti-k_t算法(anti-k_t algorithm)重建、半径参数R=0.4的喷注完成,并将分析范围拓展至距喷注轴角距离r=0.8的区域。 结果以铅-铅碰撞中心度、带电粒子与喷注轴的角距离为变量呈现:所分析的带电粒子横向动量区间为1~63 GeV,且均与横向动量区间126~316 GeV、喷注快度绝对值小于1.7的喷注匹配。 我们通过与质子-质子碰撞的测量结果取比值,量化了所测分布的修正效应。 实验观测到,横向动量低于4 GeV的带电粒子产额随与喷注轴的角距离增大而持续提升,在r=0.6处达到峰值。 横向动量高于4 GeV的带电粒子,在铅-铅碰撞的喷注核心区域(与喷注轴角距离不超过r=0.05时)产额提升,而在更大角距离处产额被抑制。
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2023-06-28
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