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高曲率项引力理论中霍金蒸发的命运是什么?

What Is the Fate of Hawking Evaporation in Gravity Theories with Higher Curvature Terms?

机构信息

Dipartimento di Fisica, "Sapienza" Università di Roma and Sezione INFN Roma1, Piazzale Aldo Moro 5, 00185, Roma, Italy.

Niels Bohr International Academy, Niels Bohr Institute, Blegdamsvej 17, 2100 Copenhagen, Denmark.

出版信息

Phys Rev Lett. 2023 Mar 3;130(9):091501. doi: 10.1103/PhysRevLett.130.091501.

Abstract

During the final stages of black hole evaporation, ultraviolet deviations from general relativity eventually become dramatic, potentially affecting the end state. We explore this problem by performing nonlinear simulations of wave packets in Einstein-dilaton-Gauss-Bonnet gravity, the only gravity theory with quadratic curvature terms which can be studied at a fully nonperturbative level. Black holes in this theory have a minimum mass but also a nonvanishing temperature. This poses a puzzle concerning the final fate of Hawking evaporation in the presence of high-curvature nonperturbative effects. By simulating the mass loss induced by evaporation at the classical level using an auxiliary phantom field, we study the nonlinear evolution of black holes past the minimum mass. We observe a runaway shrink of the horizon (a nonperturbative effect forbidden in general relativity) which eventually unveils a high-curvature elliptic region. While this might hint to the formation of a naked singularity (and hence to a violation of the weak cosmic censorship) or of a pathological spacetime region, a different numerical formulation of the initial-value problem in this theory might be required to rule out other possibilities, including the transition from the critical black hole to a stable horizonless remnant. Our Letter is relevant in the context of the information-loss paradox, dark-matter remnants, and for constraints on microscopic primordial black holes.

摘要

在黑洞蒸发的最后阶段,紫外偏离广义相对论最终变得显著,这可能会影响最终状态。我们通过在爱因斯坦-膨胀子-高斯-邦尼特引力中对波包进行非线性模拟来探索这个问题,这是唯一具有二次曲率项的引力理论,可以在完全非微扰水平上进行研究。这个理论中的黑洞具有最小质量,但也具有非零温度。这就提出了一个难题,即在存在高曲率非微扰效应的情况下,霍金蒸发的最终命运如何。我们通过使用辅助幻象场在经典水平上模拟蒸发引起的质量损失,研究了黑洞在最小质量之后的非线性演化。我们观察到视界的失控收缩(广义相对论中禁止的非微扰效应),最终揭示了一个高曲率的椭圆区域。虽然这可能暗示着形成了裸奇点(从而违反了弱宇宙监督)或病态时空区域,但需要对这个理论的初始值问题的不同数值表述进行研究,以排除其他可能性,包括从临界黑洞过渡到稳定无视界残余物。我们的信件在信息丢失悖论、暗物质残余物以及对微观原始黑洞的限制方面具有相关性。

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