论文标题

量子混乱的页面曲线的动力学机制

A dynamical mechanism for the Page curve from quantum chaos

论文作者

Liu, Hong, Vardhan, Shreya

论文摘要

如果由纯状态形成的黑洞的蒸发是单一的,则鹰辐射的纠缠熵应遵循页面曲线,从零增加到蒸发的中间点附近,然后降低到零。页面曲线的一般论点是基于以下假设:蒸发过程中黑洞和辐射的量子状态是典型的。在本文中,我们表明,基于最近提出的量子混乱的签名而无需诉诸典型性,可以是由黑洞演变中的简单动态输入产生的。我们的论点是基于我们所说的“操作员气体”方法,该方法使人们可以从算子的海森堡演变的通用特征中理解黑洞的微晶格的演变。导致页面曲线的一个关键功能是动态过程的可能性,在“气体”中的操作员可以在黑洞外面“跳”,我们称之为空隙形成过程。此类过程最初被指数抑制,但在特定时间尺度之后占主导地位,可以用作页面时间的动态定义。在Hayden-Preskill针对年轻的黑洞和黑洞的规定中,我们表明Void的形成还负责将信息从黑洞转移到辐射。我们猜测,空隙形成可能会为最近的半古典处方提供微观解释,包括在辐射的纠缠熵计算中包括岛屿。

If the evaporation of a black hole formed from a pure state is unitary, the entanglement entropy of the Hawking radiation should follow the Page curve, increasing from zero until near the halfway point of the evaporation, and then decreasing back to zero. The general argument for the Page curve is based on the assumption that the quantum state of the black hole plus radiation during the evaporation process is typical. In this paper, we show that the Page curve can result from a simple dynamical input in the evolution of the black hole, based on a recently proposed signature of quantum chaos, without resorting to typicality. Our argument is based on what we refer to as the "operator gas" approach, which allows one to understand the evolution of the microstate of the black hole from generic features of the Heisenberg evolution of operators. One key feature which leads to the Page curve is the possibility of dynamical processes where operators in the "gas" can "jump" outside the black hole, which we refer to as void formation processes. Such processes are initially exponentially suppressed, but dominate after a certain time scale, which can be used as a dynamical definition of the Page time. In the Hayden-Preskill protocol for young and old black holes, we show that void formation is also responsible for the transfer of information from the black hole to the radiation. We conjecture that void formation may provide a microscopic explanation for the recent semi-classical prescription of including islands in the calculation of the entanglement entropy of the radiation.

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