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Transport properties of the fluid produced at Relativistic Heavy-Ion Collider

机译:相对论重离子对撞机产生的流体的传输特性

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It is by now well known that the relativistic heavy-ion collisions at RHIC, BNL have produced a strongly interacting fluid with remarkable properties, among them the lowest ever observed ratio of the coefficient of shear viscosity to entropy density. Arguments based on ideas from the string theory, in particular the AdS/CFT correspondence, led to the conjecture a€“ now known to be violated a€“ that there is an absolute lower limit 1/4e??? on the value of this ratio. Causal viscous hydrodynamics calculations together with the RHIC data have put an upper limit on this ratio, a small multiple of 1/4e???, in the relevant temperature regime. Less well-determined is the ratio of the coefficient of bulk viscosity to entropy density. These transport coefficients have also been studied non-perturbatively in the lattice QCD framework, and perturbatively in the limit of high-temperature QCD. Another interesting transport coefficient is the coefficient of diffusion which is also being studied in this context. In this paper some of these recent developments are reviewed and then the opportunities presented by the anticipated LHC data are discussed, for the general nuclear physics audience.
机译:众所周知,RHIC,BNL的相对论重离子碰撞产生了一种具有显着特性的强相互作用流体,其中有史以来观察到的最低的剪切粘度与熵密度之比。基于字符串理论的观点的争论,尤其是AdS / CFT对应关系,导致了这样一个猜想:“现在已知违反了”,绝对下限是1 / 4e。这个比率的值。因果粘性流体力学计算和RHIC数据在相关温度范围内对该比例设定了上限,为1 / 4e ???的小倍数。不太确定的是体积粘度系数与熵密度之比。还已经在晶格QCD框架中非扰动地研究了这些传输系数,并且在高温QCD的极限中非扰动地研究了这些传输系数。另一个有趣的传输系数是扩散系数,在此背景下也正在研究扩散系数。在本文中,对这些最新进展进行了回顾,然后讨论了预期的LHC数据为普通核物理读者提供的机会。

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