The confluent Heun functions in black hole perturbation theory: a spacetime interpretation

IF 2.8 4区 物理与天体物理 Q2 ASTRONOMY & ASTROPHYSICS General Relativity and Gravitation Pub Date : 2025-02-04 DOI:10.1007/s10714-025-03364-7
Marica Minucci, Rodrigo Panosso Macedo
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Abstract

This work provides a spacetime interpretation of the confluent Heun functions within black hole perturbation theory (BHPT) and explores their relationship to the hyperboloidal framework. In BHPT, the confluent Heun functions are solutions to the radial Teukolsky equation, but they are traditionally studied without an explicit reference to the underlying spacetime geometry. Here, we show that the distinct behaviour of these functions near their singular points reflects the structure of key geometrical surfaces in black hole spacetimes. By interpreting homotopic transformations of the confluent Heun functions as changes in the spacetime foliation, we connect these solutions to different regions of the black hole’s global structure, such as the past and future event horizons, past and future null infinity, spatial infinity, and even past and future timelike infinity. We also discuss the relationship between the confluent Heun functions and the hyperboloidal formulation of the Teukolsky equation. Although neither confluent Heun form of the radial Teukolsky equation can be interpreted as hyperboloidal slices, this approach offers new insights into wave propagation and scattering from a global black hole spacetime perspective.

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黑洞微扰理论中的合流Heun函数:一个时空解释
本研究提供了黑洞微扰理论(BHPT)中合流Heun函数的时空解释,并探讨了它们与双曲框架的关系。在BHPT中,合流Heun函数是径向Teukolsky方程的解,但传统上对它们的研究没有明确参考潜在的时空几何。在这里,我们证明了这些函数在奇点附近的独特行为反映了黑洞时空中关键几何表面的结构。通过将合流Heun函数的同伦变换解释为时空叶状的变化,我们将这些解与黑洞全局结构的不同区域联系起来,例如过去和未来的事件视界,过去和未来的零无穷大,空间无穷大,甚至过去和未来的类时无穷大。我们还讨论了合流Heun函数与Teukolsky方程双曲形式之间的关系。尽管径向Teukolsky方程的合流Heun形式都不能解释为双曲面切片,但这种方法从全局黑洞时空的角度提供了波的传播和散射的新见解。
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来源期刊
General Relativity and Gravitation
General Relativity and Gravitation 物理-天文与天体物理
CiteScore
4.60
自引率
3.60%
发文量
136
审稿时长
3 months
期刊介绍: General Relativity and Gravitation is a journal devoted to all aspects of modern gravitational science, and published under the auspices of the International Society on General Relativity and Gravitation. It welcomes in particular original articles on the following topics of current research: Analytical general relativity, including its interface with geometrical analysis Numerical relativity Theoretical and observational cosmology Relativistic astrophysics Gravitational waves: data analysis, astrophysical sources and detector science Extensions of general relativity Supergravity Gravitational aspects of string theory and its extensions Quantum gravity: canonical approaches, in particular loop quantum gravity, and path integral approaches, in particular spin foams, Regge calculus and dynamical triangulations Quantum field theory in curved spacetime Non-commutative geometry and gravitation Experimental gravity, in particular tests of general relativity The journal publishes articles on all theoretical and experimental aspects of modern general relativity and gravitation, as well as book reviews and historical articles of special interest.
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