论文标题
通过隧道过程的量子校正方法用于黑洞辐射
A quantum-corrected approach to black hole radiation via a tunneling process
论文作者
论文摘要
用黑洞物理学的语言,霍金辐射是最有争议的主题之一,其中有很多难题,包括信息损失问题以及该辐射是否是热的问题。在这种情况下,要面对这些问题的可能方法是考虑到这种情况下的自我杀伤效应,将量子效应带入作用。我们考虑了Schwarzschild黑洞的一种量子校正形式,其灵感来自Kazakov和Solodukhin的开创性作品,以修改著名的Parikh-Wilczek隧道隧道隧道的隧道过程。我们证明,在此框架中,辐射不是热的,其相关函数比Parikh-Wilczek结果更有效,并且信息损失问题可以更成功地解决。另外,我们意识到量子校正以与电荷相同的方式影响事物。因此,看来此框架中的量子校正与电荷有关。
In the language of black hole physics, Hawking radiation is one of the most controversial subjects about which there exist lots of puzzles, including the information loss problem and the question of whether this radiation is thermal or not. In this situation, a possible way to face these problems is to bring quantum effects into play, also taking into account self-gravitational effects in the scenario. We consider a quantum-corrected form of the Schwarzschild black hole inspired by the pioneering work of Kazakov and Solodukhin to modify the famous Parikh-Wilczek tunneling process for Hawking radiation. We prove that in this framework the radiation is not thermal, with a correlation function more effective than the Parikh-Wilczek result, and the information loss problem can be addressed more successfully. Also, we realize that quantum correction affects things in the same way as an electric charge. So, it seems that quantum correction in this framework has something to do with the electric charge.