Asymptotic quasinormal frequencies of different spin fields in d-dimensional spherically-symmetric black holes

Chun Hung Chen, Hing Tong Cho, Anna Chrysostomou, Alan S. Cornell

Research output: Contribution to journalArticlepeer-review

1 Citation (Scopus)

Abstract

While Hod's conjecture is demonstrably restrictive, the link he observed between black hole (BH) area quantisation and the large overtone (n) limit of quasinormal frequencies (QNFs) motivated intense scrutiny of the regime, from which an improved understanding of asymptotic quasinormal frequencies (aQNFs) emerged. A further outcome was the development of the 'monodromy technique', which exploits an anti-Stokes line analysis to extract physical solutions from the complex plane. Here, we use the monodromy technique to validate extant aQNF expressions for perturbations of integer spin, and provide new results for the aQNFs of half-integer spins within higher-dimensional Schwarzschild, Reissner-Nordstrom, and Schwarzschild (anti-)de Sitter BH spacetimes. Bar the Schwarzschild anti-de Sitter case, the spin-1/2 aQNFs are purely imaginary; the spin-3/2 aQNFs resemble spin-1/2 aQNFs in Schwarzschild and Schwarzschild de Sitter BHs, but match the gravitational perturbations for most others. Particularly for Schwarzschild, extremal Reissner-Nordstrom, and several Schwarzschild de Sitter cases, the application of n → ∞ generally fixes Re{ω} and allows for the unbounded growth of Im{ω} in fixed quantities.

Original languageEnglish
Article number055001
JournalClassical and Quantum Gravity
Volume39
Issue number5
DOIs
Publication statusPublished - 3 Mar 2022

Keywords

  • asymptotic quasinormal modes
  • higher-dimensional black holes
  • physics of black holes

ASJC Scopus subject areas

  • Physics and Astronomy (miscellaneous)

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