School of Physics and Technology, University of Jinan, West Road of Nan Xinzhuang 336, Jinan, Shandong, 250022, China.
Center for Astrophysics, Shanghai Normal University, 100 Guilin Road, Shanghai, 200234, China.
Sci Rep. 2017 Jun 21;7(1):4000. doi: 10.1038/s41598-017-03854-y.
Spacetime singularity has always been of interest since the proof of the Penrose-Hawking singularity theorem. Naked singularity naturally emerges from reasonable initial conditions in the collapsing process. A recent interesting approach in black hole information problem implies that we need a firewall to break the surplus entanglements among the Hawking photons. Classically, the firewall becomes a naked singularity. We find some vacuum analytical solutions in R -gravity of the firewall-type and use these solutions as concrete models to study the naked singularities. By using standard quantum theory, we investigate the Hawking radiation emitted from the black holes with naked singularities. Here we show that the singularity itself does not destroy information. A unitary quantum theory works well around a firewall-type singularity. We discuss the validity of our result in general relativity. Further our result demonstrates that the temperature of the Hawking radiation still can be expressed in the form of the surface gravity divided by 2π. This indicates that a naked singularity may not compromise the Hakwing evaporation process.
时空奇点自彭罗斯-霍金奇点定理证明以来一直备受关注。裸奇点自然会从坍缩过程中的合理初始条件中出现。黑洞信息问题的一个最近有趣的方法表明,我们需要一个防火墙来打破霍金光子之间的剩余纠缠。经典上,防火墙变成了一个裸奇点。我们在 R-引力中找到了一些防火墙型的真空解析解,并将这些解用作具体模型来研究裸奇点。通过使用标准量子理论,我们研究了带有裸奇点的黑洞发出的霍金辐射。在这里,我们表明奇点本身不会破坏信息。一个幺正量子理论在防火墙型奇点周围很好地工作。我们讨论了我们在广义相对论中的结果的有效性。此外,我们的结果表明,霍金辐射的温度仍然可以表示为表面重力除以 2π 的形式。这表明裸奇点可能不会破坏霍金蒸发过程。