Running the gamut of high energy nuclear collisions

Running the gamut of high energy nuclear collisions
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运行高能核碰撞的全部范围

DOI:
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发表时间:
2020
期刊:
影响因子:
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通讯作者:
P. Tribedy
P. Tribedy
中科院分区:
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文献类型:
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作者:
B. Schenke;C. Shen;P. Tribedy

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我们在由 IP-Glasma 初始条件、MUSIC 粘性相对论流体动力学和 UrQMD 微观强子输运组成的混合形式体系内,对多种碰撞系统中的体特性和多粒子相关性进行计算。我们特别研究大型强子对撞机 (LHC) 的重离子碰撞,包括 Pb+Pb、Xe+Xe 和 O+O 碰撞,以及相对论重离子对撞机 (RHIC) 的 Au+Au、U+U、Ru+Ru、Zr+Zr 和 O+O 碰撞。我们进一步研究不对称系统,包括各种能量下的 p+Au、d+Au、$^3$He+Au 和 p+Pb 碰撞,以及 0.5 和 13 TeV 下的 p+p 碰撞。我们用一组固定的参数很好地描述了所有重离子系统中的实验可观测值,验证了框架的能量和系统依赖性。较小系统中的许多可观测值也得到了很好的描述,尽管它们测试了模型的极限。 O+O 碰撞的计算为 RHIC 和 LHC 未来潜在的运行提供了预测。
We present calculations of bulk properties and multiparticle correlations in a large variety of collision systems within a hybrid formalism consisting of IP-Glasma initial conditions, MUSIC viscous relativistic hydrodynamics, and UrQMD microscopic hadronic transport. In particular, we study heavy ion collisions at the Large Hadron Collider (LHC), including Pb+Pb, Xe+Xe, and O+O collisions, and Au+Au, U+U, Ru+Ru, Zr+Zr, and O+O collisions at the Relativistic Heavy Ion Collider (RHIC). We further study asymmetric systems, including p+Au, d+Au, $^3$He+Au, and p+Pb collisions at various energies as well as p+p collisions at 0.5 and 13 TeV. We describe experimental observables in all heavy ion systems well with one fixed set of parameters, validating the energy and system dependence of the framework. Many observables in the smaller systems are also well described, although they test the limits of the model. Calculations of O+O collisions provide predictions for potential future runs at RHIC and LHC.
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