论文标题

光子球,ISCO和OSCOS:渐近黑洞的天体物理可观察物,渐近Minkowski核心

Photon spheres, ISCOs, and OSCOs: Astrophysical observables for regular black holes with asymptotically Minkowski cores

论文作者

Berry, Thomas, Simpson, Alex, Visser, Matt

论文摘要

古典黑洞的核心包含一个奇异性。这促使各种研究人员提出了许多修改的空间,这些空间可以尽可能地模仿经典黑洞的物理可观察到的特征,但至关重要的是在其内核上不包含奇异性。由于近野体天文学的最新进展,在观察上区分经典黑洞和潜在的黑洞模仿的能力变得越来越可行。本文中,我们计算了一些具有渐近Minkowski核心的新定期黑洞的物理观察量 - 光子球的半径和极稳定的稳定时间表的圆形轨道(ESCO)。光子球和ESCO与地平线的存在(或不存在)相关的方式比Schwarzschild黑洞要复杂得多。我们发现,光子球可以任意接近(接近极端)视野,某些光子球变得稳定的情况,以及光子球和ESCOS的位置都变得多价,并具有ISCOS(ISCOS)(ISCOS)(INNERMOST稳定的圆形圆柱)和OSCOS(Innermost稳定的稳定的循环或最稳定的循环)。这为潜在的天体物理兴趣提供了极为丰富的现象学。

Classical black holes contain a singularity at their core. This has prompted various researchers to propose a multitude of modified spacetimes that mimic the physically observable characteristics of classical black holes as best as possible, but that crucially do not contain singularities at their cores. Due to recent advances in near-horizon astronomy, the ability to observationally distinguish between a classical black hole and a potential black hole mimicker is becoming increasingly feasible. Herein, we calculate some physically observable quantities for a recently proposed regular black hole with an asymptotically Minkowski core -- the radius of the photon sphere and the extremal stable timelike circular orbit (ESCO). The manner in which the photon sphere and ESCO relate to the presence (or absence) of horizons is much more complex than for the Schwarzschild black hole. We find situations in which photon spheres can approach arbitrarily close to (near extremal) horizons, situations in which some photon spheres become stable, and situations in which the locations of both photon spheres and ESCOs become multi-valued, with both ISCOs (innermost stable circular orbits) and OSCOs (outermost stable circular orbits). This provides an extremely rich phenomenology of potential astrophysical interest.

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