论文标题
常规旋转黑洞:评论
Regular Rotating Black Holes: A Review
论文作者
论文摘要
在适当的条件下,天体重要的身体崩溃会产生黑洞。由于人们期望黑洞的发电机是一个旋转体,因此黑洞也将旋转。经典解决方案中内部奇异性的存在,用于旋转黑洞,并且一般相对论与量子力学不相容的事实使我们寻求替代的常规模型来旋转黑洞。近年来,对无奇异性旋转黑洞的兴趣已显着增长,这表明,发表的论文数量的增加。毫无疑问,最新的观察发展发展(Ligo-Virgo-Kagra合作,活动地平线望远镜或在不久的将来是Lisa项目),以及探究我们的理论预测的可能性极大地促成了兴趣。 本文讨论了常规旋转黑洞的一般特征。其中包括保证缺乏奇点所需的条件,以及这种条件需要违反黑洞模型中能量条件的后果。有人认为,与经典的黑洞相反,常规旋转黑洞不需要通过其内部磁盘进行延伸。通过这种方式,可以避免在经典解决方案中出现负面质量解释和因果关系的问题。已包括有关这些空间期望的最大扩展和通常的全球因果结构的讨论。处理定期旋转黑洞的不同方法,包括使用通用的Newman-Janis算法用作不在场的aribi,从常规球形对称静态静态静态静态旋转旋转。该文本还提供了旋转黑洞的热力学和现象学的介绍。
The collapse of astrophysically significant bodies generates, under suitable conditions, black holes. Since one expects the generator of the black hole to be a rotating body, the black hole will also rotate. The existence of inner singularities in classical solutions for rotating black holes and the fact that General Relativity is incompatible with Quantum Mechanics lead us to seek for alternative regular models for rotating black holes. The interest in singularity-free rotating black holes has grown significantly in recent years, as shown by the increase in the number of published papers devoted to it. Undoubtedly, the latest observational developments (LIGO-VIRGO-KAGRA collaborations, the Event Horizon Telescope or, in the near future, the LISA project) and the possibility to probe our theoretical predictions have greatly contributed to awaken the interest. This text discusses the general characteristics of regular rotating black holes. These include the conditions needed to guarantee the absence of singularities and the consequences that such conditions entail for the violation of the energy conditions in black hole models. It is argued that regular rotating black holes do not require an extension through their inner disk, contrary to classical rotating black holes. In this way, the problems with negative-mass interpretations and causality violations appearing in classical solutions could be avoided. It has been included a discussion on the maximal extension and the usual global causal structure expected for these spacetimes. The different methods for obtaining regular rotating black holes are treated, including the use of the generalized Newman-Janis algorithm as an alibi to derive regular rotating black holes from regular spherically symmetric static ones. The text also provides an introduction to the thermodynamics and phenomenology of rotating black holes.