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Extraction of hot QCD matter transport coefficients utilizing microscopic transport theory.

机译:利用微观传输理论提取热QCD物质的传输系数。

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摘要

Ultrarelativistic heavy-ion collisions at the Relativistic Heavy-Ion Collider (RHIC) are thought to have produced a state of matter called the Quark-Gluon-Plasma (QGP). The QGP forms when nuclear matter governed by Quantum Chromodynamics (QCD) reaches a temperature and baryochemical potential necessary to achieve the transition of hadrons (bound states of quarks and gluons) to deconfined quarks and gluons. Such conditions have been achieved at RHIC, and the resulting QGP created exhibits properties of a near perfect fluid. In particular, strong evidence shows that the QGP exhibits a very small shear viscosity to entropy density ratio eta/s, near the lower bound predicted for that quantity by Anti-deSitter space/Conformal Field Theory (AdS/CFT) methods of eta/s = &plank;4pkB , where h is Planck's constant and kB is Boltzmann's constant. As the produced matter expands and cools, it evolves through a phase described by a hadron gas with rapidly increasing eta/s.;This thesis presents robust calculations of eta/s for hadronic and partonic media as a function of temperature using the Green-Kubo formalism. An analysis is performed for the behavior of eta/s to mimic situations of the hadronic media at RHIC evolving out of chemical equilibrium, and systematic uncertainties are assessed for our method. In addition, preliminary results are presented for the bulk viscosity to entropy density ratio zeta/s, whose behavior is not well-known in a relativistic heavy ion collisions. The diffusion coefficient for baryon number is investigated, and an algorithm is presented to improve upon the previous work of investigation of heavy quark diffusion in a thermal QGP.;By combining the results of my investigations for eta/s from our microscopic transport models with what is currently known from the experimental results on elliptic flow from RHIC, I find that the trajectory of eta/s in a heavy ion collision has a rich structure, especially near the deconfinement transition temperature Tc. I have helped quantify the viscous hadronic effects to enable investigators to constrain the value of eta/s for the QGP created at RHIC.
机译:相对论重离子对撞机(RHIC)的超相对论重离子碰撞被认为产生了一种称为Quark-Gluon-Plasma(QGP)的物质状态。当受量子色动力学(QCD)控制的核物质达到实现强子(夸克和胶子的束缚状态)向无约束夸克和胶子过渡所必需的温度和重化学势时,QGP就会形成。在RHIC处已经达到了这样的条件,并且生成的所得QGP表现出接近完美的流体特性。特别是,有力的证据表明,QGP的剪切粘度与熵密度之比eta / s非常小,接近eta / s的反deSitter空间/共形场理论(AdS / CFT)方法为该量所预测的下限=&plank; 4pkB,其中h是Planck常数,kB是Boltzmann常数。随着产生的物质的膨胀和冷却,它会以强子气体描述的相演化,其η/ s迅速增加。;本文提出了使用Green-Kubo对强子和部分介质的η/ s随温度变化的可靠计算。形式主义。对eta / s的行为进行了分析,以模仿RHIC脱离化学平衡时强子介质的情况,并为我们的方法评估了系统的不确定性。此外,还给出了体积粘度与熵密度比zeta / s的初步结果,其行为在相对论性重离子碰撞中并不为人所知。研究了重子数的扩散系数,并提出了一种算法,以改进先前在热QGP中重夸克扩散研究的工作。通过将我的微观传输模型对eta / s的研究结果与从RHIC的椭圆流实验结果可知,我发现重离子碰撞中eta / s的轨迹具有丰富的结构,尤其是在脱限转变温度Tc附近。我已经帮助量化了粘性强子效应,以使研究人员能够限制RHIC创建的QGP的eta / s值。

著录项

  • 作者

    Demir, Nasser Soliman.;

  • 作者单位

    Duke University.;

  • 授予单位 Duke University.;
  • 学科 Physics Nuclear.;Physics Theory.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 143 p.
  • 总页数 143
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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