论文标题

全球淬火之后的纠缠楔形横截面的演变

Evolution of Entanglement Wedge Cross Section Following a Global Quench

论文作者

Velni, Komeil Babaei, Mozaffar, M. Reza Mohammadi, Vahidinia, M. H.

论文摘要

我们研究了Vaidya几何形状中的纠缠楔形横截面(EWC)的演变,描述了一个薄薄的无效物质壳塌陷到ADS真空中,形成了黑色的brane。在全息环境中,建议该数量对不同的信息度量是双重的,包括纯化,反射熵,奇怪的熵和对数消极情绪。在2+1个维度中,我们在热淬灭后,对EWC的EWC的演变和缩放率表示了数值和分析结果的组合。在大次区域的极限下,我们发现EWC的时间演变的特征是三种不同的缩放机制:早期二次生长,中间线性生长和较晚时间饱和。此外,在3+1维中,我们通过考虑热和电磁淬灭来检查缩放行为。在热猝灭的情况下,我们的数值分析供应结果类似于对较低维度的观察结果。另一方面,对于零温度下的电磁淬灭,一个有趣的特征是从进化的线性行为转向对数生长。

We study the evolution of entanglement wedge cross section (EWCS) in the Vaidya geometry describing a thin shell of null matter collapsing into the AdS vacuum to form a black brane. In the holographic context, it is proposed that this quantity is dual to different information measures including entanglement of purification, reflected entropy, odd entropy and logarithmic negativity. In 2+1 dimensions, we present a combination of numerical and analytic results on the evolution and scaling of EWCS for strip shaped boundary subregions after a thermal quench. In the limit of large subregions, we find that the time evolution of EWCS is characterized by three different scaling regimes: an early time quadratic growth, an intermediate linear growth and a late time saturation. Further, in 3+1 dimensions, we examine the scaling behavior by considering thermal and electromagnetic quenches. In the case of a thermal quench, our numerical analysis supply results similar to observations made for the lower dimension. On the other hand, for electromagnetic quenches at zero temperature, an interesting feature is a departure from the linear behavior of the evolution to logarithmic growth.

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