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Probing the transport properties of quark-gluon plasma via heavy-flavor Boltzmann and Langevin dynamics

机译:探讨夸大玻璃等离子体的运输特性通过重型燃烧Boltzmann和Langevin Dynamics

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The heavy quark propagation behavior inside the quark-gluon plasma (QGP), is usually described in terms of the Boltzmann dynamics, which can be reduced to the Langevin approach by assuming a small momentum transfer for the scattering processes between heavy quarks and the QGP constituents. In this work, the temperature and energy dependence of the transport coefficients are calculated in the framework of both Boltzmann and Langevin dynamics, by considering only the elastic scattering processes to have a better comparison and understanding of these two models. The extracted transport coefficients are found to be larger in the Boltzmann approach as compared with the Langevin, in particular in the high-temperature and high-energy region. Within each of the two theoretical frameworks, we simulate the charm quark production and the subsequent evolution processes in relativistic heavy-ion collisions. We find that the energy loss due to elastic scattering is larger from the Boltzmann dynamics, resulting in a smaller R-AA at high p(T)(p(T) greater than or similar to 10 GeV), for both the charm quark and heavy-flavor mesons. The Boltzmann model produces systematically larger v(2), in particular at moderate P-T, meanwhile, it shows a stronger broadening behavior for the relative azimuthal angle between initially back-to-back generated c (c) over bar pairs in the similar region. They are mainly induced by the stronger interactions between heavy quarks and the QGP partons in Boltzmann, which are able to transfer more v(2) from the medium to the heavy quarks, as well as to pull more c (c) over bar pairs from high momentum to low momentum. By comparing the model calculations with available experimental measurements for D mesons, a visible deviation can be observed for both the Boltzmann and Langevin approaches. The missing inelastic contributions allow reducing the discrepancy with data, and additionally, the relevant Langevin approach is more favored by the R-AA data while the Boltzmann approach is more favored favor by the v(2) data. A simultaneous description of both observables appears challenging for both models.
机译:Quark-Gluon等离子体(QGP)内的重型夸克传播行为通常根据Boltzmann动态描述,这可以通过假设重型夸克和QGP成分之间的散射过程的小动量转移来降低到Langevin方法。在这项工作中,通过考虑仅考虑弹性散射工艺,在Boltzmann和Langevin动态的框架中计算运输系数的温度和能量依赖性,以便更好地比较和了解这两个模型。与Langevin相比,在Boltzmann方法中,发现提取的传输系数更大,特别是在高温和高能区域中。在两个理论框架中的每一个中,我们模拟了相对论重离子碰撞中的魅力夸克生产和随后的演化过程。我们发现,由于弹性散射引起的能量损失从Boltzmann动态较大,导致高p(t)的较小的r-aa(p(t)大于或类似于10 gev),对于魅力夸克和重型味道。 Boltzmann模型系统地产生较大的V(2),特别是在适度的P-T处,同时,它显示了在类似区域中最初背回来的生成的C(C)之间的相对方位角之间的相对方位角的相对方位角的更强的展大行为。它们主要由Boltzmann中的重型夸克和QGP Partons之间的更强的相互作用引起,能够从媒体转移到重型夸克的更多V(2),以及从BAR对中拉出更多C(C)高势头势头低。通过将模型计算与用于D偏斯索的可用实验测量进行比较,可以针对Boltzmann和Langevin方法观察到可见的偏差。缺失的非弹性贡献允许减少数据的差异,另外,相关的Langevin方法是由R-AA数据更赞成的,而Boltzmann方法由V(2)数据更有利。两个可观察到的同时描述对于两种型号都具有具有挑战性的。

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  • 来源
    《Physical review, C 》 |2019年第5期| 共13页
  • 作者单位

    China Three Gorges Univ Coll Sci Yichang 443002 Peoples R China;

    China Three Gorges Univ Coll Sci Yichang 443002 Peoples R China;

    Wuhan Text Univ Nano Opt Mat &

    Storage Device Res Ctr Sch Elect &

    Elect Engn Wuhan 430200 Hubei Peoples R China;

    Indiana Univ Phys Dept 2401 N Milo B Sampson Lane Bloomington IN 47408 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 原子核物理学、高能物理学 ;
  • 关键词

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