论文标题

在反应存在下,对混乱和相关性的特征的全息研究

A holographic study of the characteristics of chaos and correlation in the presence of backreaction

论文作者

Chakrabortty, Shankhadeep, Hoshino, Hironori, Pant, Sanjay, Sil, Karunava

论文摘要

在这项工作中,我们进行了一项全息研究,以估计反应对形成热菲尔双(TFD)状态的两个子系统之间相关性的影响。这些子系统中的每一个都被描述为强烈耦合的大型$ N_C $热场理论,并且通过均匀的静态夸克的分布存在均匀的分布来提出反应。我们在这里考虑的TFD状态在这里考虑的是两个AD黑孔的纠缠状态,每个状态都会因静态字符串的均匀分布而变形。为了在存在反应的情况下对两个纠缠边界场理论之间的相关性进行全息估计,我们计算了反应的永恒黑洞中的全息互信息。早期扰动的晚期指数增长是边界热场理论中混乱的标志。使用双重散装理论中的冲击波分析,我们通过计算全息蝴蝶速度来表征这种混乱的行为。我们发现,由于校正项取决于反应参数,蝴蝶速度降低了。早期扰动的最晚指数增长破坏了双面相关性,而反应总是支持它。最后,我们计算了纠缠速度,该速度基本上编码了两个边界理论之间相关性的破坏速率。

In this work, we perform a holographic study to estimate the effect of backreaction on the correlation between two subsystems forming the thermofield double (TFD) state. Each of these subsystems is described as a strongly coupled large-$N_c$ thermal field theory, and the backreaction imparted to it is sourced by the presence of a uniform distribution of heavy static quarks. The TFD state we consider here holographically corresponds to an entangled state of two AdS blackholes, each of which is deformed by a uniform distribution of static strings. In order to make a holographic estimation of correlation between two entangled boundary field theories in presence of backreaction we compute the holographic mutual information in the backreacted eternal blackhole. The late time exponential growth of an early perturbation is a signature of chaos in the boundary thermal field theory. Using the shock wave analysis in the dual bulk theory, we characterize this chaotic behavior by computing the holographic butterfly velocity. We find that there is a reduction in the butterfly velocity due to a correction term that depends on the backreaction parameter. The late time exponential growth of an early perturbation destroys the two-sided correlation, whereas the backreaction always acts in favour of it. Finally we compute the entanglement velocity that essentially encodes the rate of disruption of correlation between two boundary theories.

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