论文标题

黑洞崩溃并在有效环量子重力下弹跳

Black hole collapse and bounce in effective loop quantum gravity

论文作者

Kelly, Jarod George, Santacruz, Robert, Wilson-Ewing, Edward

论文摘要

我们为Lemaître-Tolman-Bondi的空间时代家族提供了有效的方程式,并使用这些方程式来研究Oppenheimer-Snyder倒塌模型中的量子重力效应。对于该模型,在形成具有明显范围的黑洞后,量子重力效应在能量密度和时空曲率标量与普朗克量表相当的时空区域变得很重要。这些量子重力效应首先停止尘埃场的能量密度到达Planck量表的崩溃,然后导致灰尘场开始缓慢膨胀。由于这种持续的扩展,物质场最终将延伸到明显的视野之外,此时,地平线消失了,不再有黑洞。在这个时空的任何地方都没有奇异性。此外,在忽略边缘效应的极限下,我们表明均匀能量密度的内部动力学遵循循环量子宇宙学有效的弗里德曼方程,用于空间平坦的Friedman-Lema-Lema- Roberton-Robertson-Walker-Walker时空。最后,我们估计由遥远的观察者测量的黑洞的寿命为$ \ sim(gm)^2/\ ell _ {\ rm pl} $。

We derive effective equations with loop quantum gravity corrections for the Lemaître-Tolman-Bondi family of space-times, and use these to study quantum gravity effects in the Oppenheimer-Snyder collapse model. For this model, after the formation of a black hole with an apparent horizon, quantum gravity effects become important in the space-time region where the energy density and space-time curvature scalars become comparable to the Planck scale. These quantum gravity effects first stop the collapse of the dust matter field when its energy density reaches the Planck scale, and then cause the dust field to begin slowly expanding. Due to this continued expansion, the matter field will eventually extend beyond the apparent horizon, at which point the horizon disappears and there is no longer a black hole. There are no singularities anywhere in this space-time. In addition, in the limit that edge effects are neglected, we show that the dynamics for the interior of the star of uniform energy density follow the loop quantum cosmology effective Friedman equation for the spatially flat Friedman-Lemaître-Robertson-Walker space-time. Finally, we estimate the lifetime of the black hole, as measured by a distant observer, to be $\sim (GM)^2/\ell_{\rm Pl}$.

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