Suppr超能文献

克尔-纽曼黑洞的引力电磁微扰:慢旋转极限下的稳定性和等谱性

Gravitoelectromagnetic perturbations of Kerr-Newman black holes: stability and isospectrality in the slow-rotation limit.

作者信息

Pani Paolo, Berti Emanuele, Gualtieri Leonardo

机构信息

CENTRA, Departamento de Física, Instituto Superior Técnico, Universidade Técnica de Lisboa-UTL, Avenida Rovisco Pais 1, 1049 Lisboa, Portugal and Institute for Theory and Computation, Harvard-Smithsonian CfA, 60 Garden Street, Cambridge, Massachusetts 02138, USA.

Department of Physics and Astronomy, The University of Mississippi, University, Mississippi 38677, USA and California Institute of Technology, Pasadena, Californai 91109, USA.

出版信息

Phys Rev Lett. 2013 Jun 14;110(24):241103. doi: 10.1103/PhysRevLett.110.241103.

Abstract

The most general stationary black-hole solution of Einstein-Maxwell theory in vacuum is the Kerr-Newman metric, specified by three parameters: mass M, spin J, and charge Q. Within classical general relativity, one of the most important and challenging open problems in black-hole perturbation theory is the study of gravitational and electromagnetic fields in the Kerr-Newman geometry, because of the indissoluble coupling of the perturbation functions. Here we circumvent this long-standing problem by working in the slow-rotation limit. We compute the quasinormal modes up to linear order in J for any value of Q and provide the first, fully consistent stability analysis of the Kerr-Newman metric. For scalar perturbations the quasinormal modes can be computed exactly, and we demonstrate that the method is accurate within 3% for spins J/J(max) ≲ 0.5, where J(max) is the maximum allowed spin for any value of Q. Quite remarkably, we find numerical evidence that the axial and polar sectors of the gravitoelectromagnetic perturbations are isospectral to linear order in the spin. The extension of our results to nonasymptotically flat space-times could be useful in the context of gauge-gravity dualities and string theory.

摘要

爱因斯坦 - 麦克斯韦真空理论中最一般的静态黑洞解是克尔 - 纽曼度规,由三个参数确定:质量M、自旋J和电荷Q。在经典广义相对论中,黑洞微扰理论里最重要且最具挑战性的开放问题之一是研究克尔 - 纽曼几何中的引力场和电磁场,这是因为微扰函数之间存在不可分割的耦合。在此,我们通过在慢旋转极限下开展工作来规避这个长期存在的问题。我们针对任意Q值计算了直至J的线性阶的准正则模,并对克尔 - 纽曼度规进行了首次完全一致的稳定性分析。对于标量微扰,准正则模可以精确计算,并且我们证明,对于自旋J/J(max) ≲ 0.5(其中J(max)是任意Q值下允许的最大自旋),该方法的精度在3%以内。非常值得注意的是,我们发现数值证据表明,引力电磁微扰的轴向和极向部分在自旋方面直至线性阶是等谱的。将我们的结果扩展到非渐近平直时空在规范 - 引力对偶和弦理论的背景下可能会很有用。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验