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Bulk matter evolution and extraction of jet transport parameters in heavy-ion collisions at energies available at the BNL Relativistic Heavy Ion Collider (RHIC)

机译:BNL相对论重离子对撞机(RHIC)提供的能量下重离子碰撞中的物质演化和射流输运参数的提取

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摘要

Within the picture of jet quenching induced by multiple parton scattering and gluon bremsstrahlung, medium modification of parton fragmentation functions and therefore the suppression of large transverse-momentum hadron spectra are controlled by both the value and the space-time profile of the jet transport parameter along the jet propagation path. Experimental data on single-hadron suppression in high-energy heavy-ion collisions at the Relativistic Heavy Ion Collider energy are analyzed within the higher-twist (HT) approach to the medium-modified fragmentation functions and the next-to-leading order perturbative QCD parton model. Assuming that the jet transport parameter q̂ is proportional to the particle number density in both quark gluon plasma (QGP) and hadronic phase, experimental data on jet quenching in deeply inelastic scattering off nuclear targets can provide guidance on q̂h in the hot hadronic matter. One can then study the dependence of the extracted initial value of jet-quenching parameter q̂0 at initial time τ0 on the bulk medium evolution. Effects of transverse expansion, radial flow, phase transition, and nonequilibrium evolution are examined. The extracted values are found to vary from q̂0τ0=0.54 GeV2 in the (1+3)d ideal hydrodynamic model to 0.96 GeV2 in a cascade model, with the main differences coming from the initial nonequilibrium evolution and the later hadronic evolution. The overall contribution to jet quenching from the hadronic phase, about 22%–44%, is found to be significant. Therefore, a realistic description of the early nonequilibrium parton evolution and later hadronic interaction will be critical for accurate extraction of the jet transport parameter in the strongly interacting QGP phase in high-energy heavy-ion collisions.
机译:在多重parton散射和胶子致辐射引起的射流淬灭的图像中,parton碎裂函数的介质修饰以及因此对大横向动量强子谱的抑制都受射流传输参数沿时空分布的值和时空分布的控制。射流传播路径。相对论重离子对撞机能量在高能重离子碰撞中单强子抑制的实验数据在高扭曲(HT)方法中分析了中等修饰的碎裂函数和次阶扰动QCD parton模型。假设夸克胶子等离子体(QGP)和强子相中的射流​​输运参数q̂与粒子数密度成正比,那么在核目标深处非弹性散射中的射流淬灭实验数据可以为热强子物质中q̂h提供指导。然后,可以研究在初始时间τ0处提取的急冷参数q̂0的初始值对整体介质演化的依赖性。研究了横向膨胀,径向流动,相变和非平衡演化的影响。发现提取的值从(1 + 3)d理想流体力学模型中的q̂0τ0 = 0.54 GeV2变化到级联模型中的0.96 GeV2,主要区别在于初始的非平衡演化和后来的强子演化。发现强子相对射流淬火的总贡献约为22%–44%。因此,对高能重离子碰撞中强相互作用的QGP相中的射流​​输运参数的准确提取,对早期非平衡部分演化和随后的强子相互作用的现实描述至关重要。

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    《Physical Review C:Nuclear Physics》 |2010年第6期|p.1-11|共11页
  • 作者单位

    1Institute of Particle Physics and Key Laboratory of Quark & Lepton Physics, Huazhong Normal University, Wuhan 430079, China2Institut für Theoretische Physik, Johann Wolfgang Goethe-Universität, Max-von-Laue-Strasse 1, D-60438 Frankfurt am Main, Germany3Nuclear Science Division, MS 70R0319, Lawrence Berkeley National Laboratory, Berkeley, California 94720, USA4Frankfurt Institute for Advanced Studies, Ruth-Moufang-Strasse 1, D-60438 Frankfurt am Main, Germany;

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  • 入库时间 2022-08-18 01:04:24

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