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Asymptotic quasinormal modes, echoes and black hole spectral instability: A brief review

Shui-Fa ShenPostdoctoral Department, Turon University, Karshi 180100, UzbekistanGuan-Ru LiFaculdade de Engenharia de Guaratinguetá, Universidade Estadual Paulista, 12516-410, Guaratinguetá, SP, BrazilRamin G. DaghighNatural Sciences Department, Metropolitan State University, Saint Paul, Minnesota, 55106, USAJodin C. MoreyLe Moyne College, Syracuse, New York, 13214, USAMichael D. GreenMathematics and Statistics Department, Metropolitan State University, Saint Paul, Minnesota, 55106, USAWei-Liang QianCenter for Gravitation and Cosmology, College of Physical Science and Technology, Yangzhou University, Yangzhou 225009, ChinaRui-Hong YueCenter for Gravitation and Cosmology, College of Physical Science and Technology, Yangzhou University, Yangzhou 225009, China
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In this paper, we present a short review of the analytical aspects of recent progress in the study of black hole spectral instability and its potential observational consequences. This topic, inspired by earlier foundational works, has attracted considerable attention in the recent literature. It has been demonstrated that both the low-lying modes and high overtones of black hole quasinormal spectra can be substantially influenced by small deformations in the effective potential of the wave equation that describes black hole perturbations. The temporal evolution of gravitational wave signals is primarily governed by the first few low-lying quasinormal modes. In contrast, the asymptotic behavior of high overtones is closely associated with the phenomenon of black hole echoes. We review relevant studies on spectral instability in both regimes, highlighting their potential to produce substantial observational signatures in gravitational wave data. Additionally, recent proposals of Regge poles and reflectionless modes as alternative stable observables for probing black hole spacetimes are summarized.

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