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Heavy ion collisions from AdS/CFT correspondence.

机译:来自AdS / CFT对应关系的重离子碰撞。

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摘要

It is now believed that heavy ion collisions have produced a state of strongly coupled quark gluon plasma. The strong coupling of the fields make the perturbative field theoretical calculation less reliable. The gauge/gravity duality has recently emerged as a powerful tool allowing us to study the dynamics of the gauge fields at strong coupling. Many novel features of strongly coupled gauge fields have been revealed in recent studies via the duality. In this dissertation, I will focus on an important aspect in heavy ion collisions: the equilibration of matter and formation of quark gluon plasma.;While linearized Einstein equation encodes dynamics near equilibrium, e.g quasi-normal mode, the thermalization of matter far from equilibrium necessarilly involves strong gravity behavior. I will first use a gravitational collapse model, which is dual to thermalization process of the quark gluon plasma. The spectral densities of stress energy tensor are studied and found to show universal behavior as the thermalization is approached. Then I will also describe a model of gravitational shock wave collision, which mimics the relativistic nucleus collisions. The shock wave model allows us to find the apparent horizon, its area giving a lower bound to the entropy production as a function of the impact parameter. An critical impact parameter is observed, beyond which no thermalization is possible. I will finally comment on the equivalence between the collisions of sourced shock wave and sourceless shock wave.
机译:现在认为重离子碰撞已经产生了强耦合夸克胶子等离子体的状态。场的强耦合使微扰场理论计算不太可靠。轨距/重力对偶最近已成为一种强大的工具,使我们能够研究强耦合下轨距场的动力学。最近的研究通过对偶性揭示了强耦合规范场的许多新颖特征。在这篇论文中,我将重点讨论重离子碰撞中的一个重要方面:物质的平衡和夸克胶子等离子体的形成。;虽然线性化的爱因斯坦方程编码接近平衡的动力学,例如准正态模式,但是物质的热化却远离平衡必然涉及强重力行为。我将首先使用重力崩溃模型,该模型对夸克胶子等离子体的热化过程具有双重作用。研究了应力能张量的谱密度,发现随着热化的进行,其表现出普遍的行为。然后,我还将描述一个引力冲击波碰撞的模型,该模型模仿相对论核碰撞。冲击波模型使我们能够找到视界,视界的面积根据影响参数对熵的产生给出了下限。观察到一个关键的冲击参数,超过这个参数就不可能进行热化。最后,我将评论源冲击波与无源冲击波之间的碰撞等价性。

著录项

  • 作者

    Lin, Shu.;

  • 作者单位

    State University of New York at Stony Brook.;

  • 授予单位 State University of New York at Stony Brook.;
  • 学科 Physics Nuclear.;Physics Elementary Particles and High Energy.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 195 p.
  • 总页数 195
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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