论文标题

破坏非旋转量子校正黑洞的事件范围

Destroying the event horizon of a nonsingular rotating quantum-corrected black hole

论文作者

Yang, Si-Jiang, Zhang, Yu-Peng, Wei, Shao-Wen, Liu, Yu-Xiao

论文摘要

弱宇宙审查猜想无法阻止的非源黑洞事件范围的破坏可能使我们有可能访问黑洞内部重力的量子状态。我们研究了本文中超过测试粒子和标量场的非旋转量子校正的黑洞的可能性,并分析量子参数对事件范围破坏的影响。对于测试颗粒注射,由于存在量子参数,因此极端和近超外黑孔都不能过度繁殖。量子参数越大,较难的黑洞越多。量子参数似乎是防止要破坏黑洞的保护者。但是,对于测试标量场散射,可以破坏极端和近超级黑洞。由于循环量子重力校正,极端黑洞的角速度从极端Kerr黑洞的角速度转移。这提供了少量的波模式,以破坏量子校正黑洞的事件范围。

The destruction of the event horizon of a nonsingular black hole, which is not prevented by the weak cosmic censorship conjecture, might provide us the possibility to access quantum regime of gravity inside black hole. We investigate the possibility of overspinning a nonsingular rotating quantum-corrected black hole by a test particle and a scalar field in this paper, and analyse the effect of the quantum parameter on the destruction of the event horizon. For the test particle injection, both extremal and near-extremal black holes cannot be overspun due to the existence of the quantum parameter. And the larger the quantum parameter the harder the black hole to be overspun. It seems that the quantum parameter acts as a protector to prevent the black hole to be destroyed. However, for the test scalar field scattering, both extremal and near-extremal black holes can be destroyed. Due to the loop quantum gravity correction, the angular velocity of the extremal black hole shifts from that of the extremal Kerr black hole. This provides a small range of wave modes to destroy the event horizon of the quantum-corrected black hole.

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