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Detectability of avoided crossings in black hole ringdowns

Hayato Imafuku1,2,*, Naritaka Oshita3,4,†, and Hiroki Takeda5,6,‡

  • *Contact author: imafuku-hayato@resceu.s.u-tokyo.ac.jp
  • Contact author: oshita@phys.kindai.ac.jp
  • Contact author: takeda@tap.scphys.kyoto-u.ac.jp

Phys. Rev. D 114, 064014 – Published 8 September, 2026

DOI: https://doi.org/10.1103/lpm5-28jm

Abstract

Quasinormal modes (QNMs) of black holes can exhibit avoided crossings (ACs), in which specific QNM frequencies approach each other while their amplitudes are enhanced and acquire nearly opposite phases, leading to characteristic interference. Resolving such closely spaced modes through black hole spectroscopy is observationally challenging. In this paper, we investigate the detectability of nearly degenerate QNMs in the presence of an AC within a Bayesian framework using three waveform models. We examine how the inference of the complex frequencies and amplitudes depends on the separation between the two QNM frequencies and on the choice of template waveform. We find that resolving the individual QNM frequencies is difficult even under optimistic conditions. On the other hand, collective waveform signatures associated with ACs may still be identified through complementary waveform descriptions, provided that the AC-related modes dominate the observed ringdown signal and contamination from more slowly damped modes is negligible or can be removed.

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References (54)

  1. T. Regge and J. A. Wheeler, Phys. Rev. 108, 1063 (1957).
  2. F. J. Zerilli, Phys. Rev. Lett. 24, 737 (1970).
  3. S. A. Teukolsky, Astrophys. J. 185, 635 (1973).
  4. M. Sasaki and T. Nakamura, Prog. Theor. Phys. 67, 1788 (1982).
  5. S. Chandrasekhar and S. L. Detweiler, Proc. R. Soc. A 350, 165 (1976).
  6. K. D. Kokkotas and B. G. Schmidt, Living Rev. Relativity 2, 2 (1999).
  7. E. Berti, V. Cardoso, and A. O. Starinets, Classical Quantum Gravity 26, 163001 (2009).
  8. E. Berti et al., Classical Quantum Gravity 43, 123001 (2026).
  9. B. P. Abbott et al. (LIGO Scientific and Virgo Collaborations), Phys. Rev. Lett. 116, 061102 (2016).
  10. A. G. Abac et al. (LIGO Scientific, Virgo, and KAGRA Collaborations), Astrophys. J. Lett. 1004, L22 (2026).
  11. A. G. Abac et al. (LIGO Scientific, Virgo, and KAGRA Collaborations), arXiv:2603.19019.
  12. A. G. Abac et al. (LIGO Scientific, Virgo, and KAGRA Collaborations), arXiv:2603.19020.
  13. A. G. Abac et al. (LIGO Scientific, Virgo, and KAGRA Collaborations), arXiv:2603.19021.
  14. A. G. Abac et al. (LIGO Scientific, Virgo, and KAGRA Collaborations), Phys. Rev. Lett. 135, 111403 (2025).
  15. A. G. Abac et al. (LIGO Scientific, Virgo, and KAGRA Collaborations), Phys. Rev. Lett. 136, 041403 (2026).
  16. O. J. C. Dias, M. Godazgar, J. E. Santos, G. Carullo, W. Del Pozzo, and D. Laghi, Phys. Rev. D 105, 084044 (2022).
  17. A. Davey, O. J. C. Dias, P. Rodgers, and J. E. Santos, J. High Energy Phys. 07 (2022) 086.
  18. O. J. C. Dias, M. Godazgar, and J. E. Santos, J. High Energy Phys. 07 (2022) 076.
  19. A. Davey, O. J. C. Dias, and J. E. Santos, J. High Energy Phys. 12 (2023) 101.
  20. H. Motohashi, Phys. Rev. Lett. 134, 141401 (2025).
  21. J. P. Cavalcante, M. Richartz, and B. C. da Cunha, Phys. Rev. Lett. 133, 261401 (2024).
  22. N. Oshita, E. Berti, and V. Cardoso, Phys. Rev. Lett. 135, 031401 (2025).
  23. R. K. L. Lo, L. Sabani, and V. Cardoso, Phys. Rev. D 111, 124002 (2025).
  24. Y. Yang, E. Berti, and N. Franchini, Phys. Rev. Lett. 135, 201401 (2025).
  25. T. Takahashi, H. Motohashi, and K. Takahashi, Phys. Rev. D 112, 064006 (2025).
  26. K.-i. Kubota and H. Motohashi, Phys. Rev. D 113, 043053 (2026).
  27. L.-M. Cao, M.-F. Ji, L.-B. Wu, and Y.-S. Zhou, arXiv:2511.17067.
  28. R. Panosso Macedo, T. Katagiri, K.-i. Kubota, and H. Motohashi, Phys. Rev. D 113, L121504 (2026).
  29. L.-B. Wu, L. Xie, L.-M. Cao, M.-F. Ji, and Y.-S. Zhou, Sci. China Phys. Mech. Astron. 69, 240415 (2026).
  30. N. Nakamoto and N. Oshita, Phys. Rev. D 113, 104032 (2026).
  31. L. Cheng, X. Guo, Y. Li, J. Tao, and P. Wang, arXiv:2603.22261.
  32. Y. Zhou, arXiv:2604.07400.
  33. E. W. Leaver, Phys. Rev. D 34, 384 (1986).
  34. Y. Sun and R. H. Price, Phys. Rev. D 38, 1040 (1988).
  35. N. Andersson, Phys. Rev. D 51, 353 (1995).
  36. K. Glampedakis and N. Andersson, Phys. Rev. D 64, 104021 (2001).
  37. K. Glampedakis and N. Andersson, Classical Quantum Gravity 20, 3441 (2003).
  38. E. Berti and V. Cardoso, Phys. Rev. D 74, 104020 (2006).
  39. Z. Zhang, E. Berti, and V. Cardoso, Phys. Rev. D 88, 044018 (2013).
  40. T. Bayes, Phil. Trans. R. Soc. 53, 370 (1763).
  41. M. Maggiore, Gravitational Waves. Vol. 1: Theory and Experiments (Oxford University Press, New York, 2007).
  42. B. P. Abbott et al. (LIGO Scientific and Virgo Collaborations), Classical Quantum Gravity 37, 055002 (2020).
  43. B. P. Abbott et al. (KAGRA, LIGO Scientific, and Virgo Collaborations), Living Rev. Relativity 23, 3 (2020).
  44. G. Carullo, W. Del Pozzo, and J. Veitch, Phys. Rev. D 99, 123029 (2019); 100, 089903(E) (2019).
  45. M. Isi, M. Giesler, W. M. Farr, M. A. Scheel, and S. A. Teukolsky, Phys. Rev. Lett. 123, 111102 (2019).
  46. R. Abbott et al. (LIGO Scientific and Virgo Collaborations), Phys. Rev. D 103, 122002 (2021).
  47. G. Carullo, W. Del Pozzo, and J. Veitch, pyring: A time-domain ringdown analysis python package, git.ligo.org/lscsoft/pyring (2023).
  48. J. Veitch, W. D. Pozzo, A. Lyttle, M. J. Williams, C. Talbot, M. Pitkin, G. Ashton, Cody, M. Hübner, S. Maenaut, D. Macleod, A. Nitz, D. Mihaylov, G. Carullo, G. Davies, and T. Wang, johnveitch/cpnest: v0.12.0 (2025).
  49. E. Berti, V. Cardoso, and C. M. Will, Phys. Rev. D 73, 064030 (2006).
  50. C. Cutler and E. E. Flanagan, Phys. Rev. D 49, 2658 (1994).
  51. E. Poisson and C. M. Will, Phys. Rev. D 52, 848 (1995).
  52. O. Dreyer, B. J. Kelly, B. Krishnan, L. S. Finn, D. Garrison, and R. Lopez-Aleman, Classical Quantum Gravity 21, 787 (2004).
  53. V. Baibhav, E. Berti, V. Cardoso, and G. Khanna, Phys. Rev. D 97, 044048 (2018).
  54. H. Yang, K. Yagi, J. Blackman, L. Lehner, V. Paschalidis, F. Pretorius, and N. Yunes, Phys. Rev. Lett. 118, 161101 (2017).

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