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On the universality of AdS 2 diffusion bounds and the breakdown of linearized hydrodynamics

机译:关于广告的普遍性 2 扩散界和线性化流体动力学的故障

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A bstract The chase of universal bounds on diffusivities in strongly coupled systems and holographic models has a long track record. The identification of a universal velocity scale, independent of the presence of well-defined quasiparticle excitations, is one of the major challenges of this program. A recent analysis, valid for emergent IR fixed points exhibiting local quantum criticality, and dual to IR AdS_(2)geometries, suggests to identify such a velocity using the time and length scales at which hydrodynamics breaks down — the equilibration velocity. The latter relates to the radius of convergence of the hydrodynamic expansion and it is extracted from a collision between a hydrodynamic diffusive mode and a non-hydrodynamic mode associated to the IR AdS_(2)region. In this short note, we confirm this picture for holographic systems displaying the spontaneous breaking of translational invariance. Moreover, we find that, at zero temperature, the lower bound set by quantum chaos and the upper one defined by causality and hydrodynamics exactly coincide, determining uniquely the diffusion constant. Finally, we comment on the meaning and universality of this newly proposed prescription.
机译:Bstract在强耦合系统和全息模型中的扩散性上的普遍界限的追逐具有很长的轨道记录。识别普遍速度刻度,独立于定义明确的Quasiplicle激励,是该计划的主要挑战之一。最近的分析,适用于表现出局部量子临界性的紧急IR固定点,以及双向IR ADS_(2)几何形状,建议使用流体动力学缩小的时间和长度尺度来识别这种速度 - 平衡速度。后者涉及流体动力学膨胀的收敛半径,并且从流体动力漫射模式和与IR ADS_(2)区域相关联的非流体动力模式之间的碰撞中提取。在此简短的票据中,我们为显示自发的翻译不变性的全息系统确认了这张照片。此外,我们发现,在零温度下,由量子混沌和由因果动力学定义的uperutum混沌和鞋面的下部结合精确地重合,确定唯一的扩散常数。最后,我们评论了这种新拟议的处方的含义和普遍性。

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