论文标题

在爱因斯坦的立方重力和非唯一性中充电的黑洞

Charged black holes in Einsteinian cubic gravity and nonuniqueness

论文作者

Frassino, Antonia Micol, Rocha, Jorge V.

论文摘要

黑洞是宇宙中最简单的对象。它们对应于时空几何形状的极端变形,甚至可能没有物质。总体而言,(电)真空黑洞是由它们的质量,电荷和角动量决定的。此功能来自独特定理,如果人们认为更高的维度或物质场与重力耦合,则可以逃避。在这里,我们发现爱因斯坦的立方重力是对爱因斯坦重力进行良好动机的修饰,包括根据低能量有效的理论期望,包括三阶曲率校正,当最小耦合到麦克斯韦场时,带电荷大于质量的黑洞溶液接受了大于质量的黑洞溶液。此外,我们发现,在这个方案中,可以有两个渐近平坦的黑洞,具有相同的电荷和质量,这是四个不含病理的四个维度的真空黑洞非独立性的第一个例子。对这些黑洞的热力学的检查表明,当两个分支共存时,只有较大的黑洞在热力学上是稳定的,而较小的分支则具有负比热。爱因斯坦的立方重力揭示了另外两个令人惊讶的特征。与通常的Reissner-Nordström时空相反,带电的黑洞没有内在的地平线,因此避免了需要诉诸强大的宇宙审查制度来维护确定性。除黑洞外,还有一个参数的赤裸裸的家族,与前者分享相同的质量和指控,但与它们没有连续的联系。这些赤裸的奇异性存在于次要状态中,即使是纯净(无负荷)的爱因斯坦立方重力也存在。

Black holes are the simplest objects in the universe. They correspond to extreme deformations of spacetime geometry, and can exist even devoid of matter. In general relativity, (electro)vacuum black holes are uniquely determined by their mass, charge and angular momentum. This feature follows from a uniqueness theorem, which can be evaded if one considers higher dimensions or matter fields coupled to gravity. Here we find that Einsteinian cubic gravity, a well-motivated modification of Einstein gravity that includes third-order curvature corrections in accordance with low-energy effective theory expectations, admits black hole solutions with charge greater than mass, when minimally coupled to a Maxwell field. Moreover, we find that, in this regime, there can be two asymptotically flat black holes with the same charge and mass, posing the first example of vacuum black hole nonuniqueness in four dimensions that is free from pathologies. Examination of these black hole's thermodynamics reveals that when two branches coexist only the larger black hole is thermodynamically stable, while the smaller branch has negative specific heat. Einsteinian cubic gravity unveils two further surprising features. The charged black holes do not possess an inner horizon, in contrast with the usual Reissner-Nordström spacetime, thus avoiding the need to resort to strong cosmic censorship to uphold determinism. In addition to black holes, there exists a one-parameter family of naked singularity spacetimes sharing the same mass and charge as the former, but not continuously connected with them. These naked singularities exist in the under-extremal regime, being present even in pure (uncharged) Einsteinian cubic gravity.

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