利用ATLAS探测器,在$\sqrt\{mathrm{s}_\mathrm{NN}}$ = 5.02 TeV的Pb+Pb对撞中,通过测量光子喷射事件中的喷射轨道相关性,寻找夸克-胶子等离子体中的喷射诱导扩散尾流

ATLAS Collaboration
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引用次数: 0

摘要

本文利用大型强子对撞机的 ATLAS 探测器在 $\sqrt{s_{\text{NN}}$ = 5.02 TeV 下记录的 1.72 nb$^{-1}$ Pb+Pb 数据,对光子-射流事件中的射流轨道相关性进行了测量。我们选择了具有高能光子-射流对的事件,其中光子和射流在方位角上大致背靠背。测量了喷流和带电粒子轨道之间的角相关性,其反向动量($p_\text{T}$)在0.5-2.0 GeV范围内与喷流相对的半球,$|\Delta\phi\text{(jet,track)}|>\pi/2$,是它们的相对伪时差($|\Delta\eta\text{(jet,track)}|$)的函数。在中心Pb+Pb碰撞中,这些相关性被预测为对夸克-胶子等离子体中因高p_\text{T}$部分子横穿等离子体而损失的能量所导致的扩散唤醒很敏感,其特征修正为$|\Delta\eta\text{(jet,track)}|$的函数。通过对射流与光子的$p_\text{T}$比值进行不同的选择来检验相关性,以选择不同能量损失程度的事件。在当前灵敏度范围内没有观测到扩散唤醒信号,报告了扩散唤醒振幅的 95% 置信度上限。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Search for the jet-induced diffusion wake in the quark-gluon plasma via measurements of jet-track correlations in photon-jet events in Pb+Pb collisions at $\sqrt{\mathrm{s}_{\mathrm{NN}}}$ = 5.02 TeV with the ATLAS detector
This paper presents a measurement of jet-track correlations in photon-jet events, using 1.72 nb$^{-1}$ of Pb+Pb data at $\sqrt{s_{\text{NN}}}$ = 5.02 TeV recorded with the ATLAS detector at the LHC. Events with energetic photon-jet pairs are selected, where the photon and jet are approximately back-to-back in azimuth. The angular correlation between jets and charged-particle tracks with transverse momentum ($p_\text{T}$) in the range 0.5-2.0 GeV in the hemisphere opposite to the jet, $|\Delta\phi\text{(jet,track)}|>\pi/2$, is measured as a function of their relative pseudorapidity difference, $|\Delta\eta\text{(jet,track)}|$. In central Pb+Pb collisions, these correlations are predicted to be sensitive to the diffusion wake in the quark-gluon plasma resulting from the lost energy of high-$p_\text{T}$ partons traversing the plasma, with a characteristic modification as a function of $|\Delta\eta\text{(jet,track)}|$. The correlations are examined with different selections on the jet-to-photon $p_\text{T}$ ratio to select events with different degrees of energy loss. No diffusion wake signal is observed within the current sensitivity and upper limits at 95% confidence level on the diffusion wake amplitude are reported.
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