论文标题

在黑洞热力学,奇异性和重力熵上

On Black Hole Thermodynamics, Singularity, and Gravitational Entropy

论文作者

Ong, Yen Chin

论文摘要

在其概念近半个世纪之后,黑洞热力学仍然存在许多基本问题。例如,黑洞地平线的基本自由度是什么?此外,古典黑洞还具有时空的奇异性。尽管人们通常认为量子重力可以“治愈”奇异性,但这种观点需要更深入的检查。在这篇综述中,我将研究奇异性在量子重力,可能扮演的角色以及奇异性与黑洞热力学之间的可能联系的可能性。我还将讨论如何使用曲率不变剂来定义黑洞的引力熵,并讨论如何使用曲率不变剂进行定义,以及令人惊讶的暗示:在不同的重力理论中黑洞的熵是时间间隔曲率的不同表现,即它们的基础微生物可能不同。最后,我回顾了最近建立的“胡克法律”,用于单独旋转迈尔斯 - 佩里黑洞(包括凯尔黑洞),这些黑洞(包括黑洞碎片化)是黑洞热力学第二定律的结果 - 最大的“胡克恩力量”以及鲁佩代纳的热力学几何形状。这也提出了一种研究黑洞微观结构的新方法,并暗示了某些黑洞超出了胡胡恩政权(因此具有不同的微观结构)的可能性。在研究黑洞热力学,时空奇异性和宇宙审查制度以及引力熵之间的显着连接时,我将指出一些微妙之处,提供一些新的想法,并提出一些棘手但根本的问题,包括黑洞热力学真的只是“普通热力学”还是完全不同的东西。

Many fundamental issues remain for black hole thermodynamics after almost half a century of its conception. For example, what are the underlying degrees of freedom of a black hole horizon that give rise to said thermodynamical properties? Furthermore, classical black holes also harbor a spacetime singularity. Although it is often believed that quantum gravity would "cure" the singularity, as emphasized by Penrose, this viewpoint requires a deeper examination. In this review, I will examine the possibility that singularities remain in quantum gravity, the roles they may play, and the possible links between singularity and black hole thermodynamics. I will also discuss how -- inspired by Penrose's Weyl curvature hypothesis -- gravitational entropy for a black hole can be defined using curvature invariants, and the surprising implication that the entropy of black holes in different theories of gravity are different manifestations of spacetime curvature, i.e., their underlying microstructures could be different. Finally, I review the "Hookean law" recently established for singly rotating Myers-Perry black holes (including Kerr black holes) that connect black hole fragmentation -- a consequence of the second law of black hole thermodynamics -- with the maximum "Hookean force", as well as with the thermodynamic geometry of Ruppeiner. This also suggests a new way to study black hole microstructures, and hints at the possibility that some black holes are beyond the Hookean regime (and thus have different microstructures). While examining the remarkable connections between black hole thermodynamics, spacetime singularities and cosmic censorship, as well as gravitational entropy, I shall point out some subtleties, provide some new thoughts, and raise some hard but fundamental questions, including whether black hole thermodynamics is really just "ordinary thermodynamics" or something quite different.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源