Measurement of photonuclear jet production in ultra-peripheral Pb+Pb collisions at $\sqrt{s_{\text{NN}}} = 5.02$ TeV with the ATLAS detector

ATLAS Collaboration
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Abstract

In ultra-relativistic heavy ion collisions, the photoproduction of high-energy jets can be used to constrain nuclear parton distributions for a wide range of parton kinematics. Results are presented from a measurement of photonuclear production of dijet and multi-jet final states in ultra-peripheral \mbox{Pb+Pb} collisions at $\sqrt{s_{\text{NN}}} = 5.02$ TeV using a data set recorded in 2018 with the ATLAS detector at the LHC and corresponding to an integrated luminosity of 1.72 $\text{nb}^{-1}$. Photonuclear final states are selected by requiring a rapidity gap in the photon direction; this selects events where one of the outgoing nuclei remains intact. Jets are reconstructed using the anti-$k_\text{t}$ algorithm with radius parameter, $R = 0.4$. Triple-differential cross-sections, unfolded for detector response, are measured and presented using two sets of kinematic variables. The first set consists of the total transverse momentum ($H_\text{T}$), rapidity, and mass of the jet system. The second set uses $H_\text{T}$ and particle-level nuclear and photon parton momentum fractions, $x_\text{A}$ and $z_{\gamma}$, respectively. The results are compared with leading-order perturbative QCD calculations of photonuclear jet production cross-sections, demonstrating their potential to provide a strong new constraint on nuclear parton distributions.
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利用 ATLAS 探测器在 $\sqrt{s_{text\{NN}} = 5.02$ TeV 的超外围 Pb+Pb 对撞中测量光核喷流的产生
在超相对论重离子对撞中,高能射流的光生成可以用来约束大范围内的核部分子运动学分布。本文介绍了在$\sqrt{s_{\text{NN}}=5.02$ TeV的超外围mbox{Pb+Pb}对撞中二射流和多射流终态的光核生成测量结果,使用的数据集记录于2018年大型强子对撞机的ATLAS探测器,对应于1.72 $\text{nb}^{-1}$的积分光度。光子核最终态是通过要求光子方向上的快速间隙来选择的;这就选择了其中一个出射核保持完整的事件。使用反$k_\text{t}$算法重建射流,半径参数为$R = 0.4$。根据探测器响应展开的三重差分截面使用两组运动学变量进行测量和呈现。第一组变量包括射流系统的总横向动量($H_\text{T}$)、速度和质量。第二组变量使用的是$H_\text{T}$和粒子级核与光子部分子动量分数,分别是$x_\text{A}$和$z_{\gamma}$。结果与光子核射流产生截面的前沿扰动QCD计算结果进行了比较,证明它们有可能为核部分子分布提供新的强有力的约束。
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