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March 29, 2026Physics Letters B8 citationsOpen Access

Telling tails and quasi-resonances in the vicinity of Dymnikova regular black hole

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BLBekir Can LütfüoğluJRJavlon RayimbaevBRBekzod Rahmatov

Key Points

  • The aim is to explore the behavior of massive scalar perturbations in the Dymnikova regular black hole context, focusing on quasinormal modes and their implications.
  • Applied time-domain integration and WKB method with Padé improvements
  • Analyzed quasinormal modes and grey-body factors
  • Examined the effects of field mass on oscillation frequencies and damping rates
  • Dominant mode's oscillation frequency increases with field mass, while damping rate decreases
  • Late-time signals show oscillatory tails with power-law decay rates
  • Grey-body factors reveal significant suppression of radiation as mass increases

Abstract

We investigate quasinormal modes, late-time tails, and grey-body factors for massive scalar perturbations in the background of the Dymnikova regular black hole. By applying both the time-domain integration and the WKB method with Padé improvements, we show that the spectrum of massive fields differs qualitatively from the massless case. The oscillation frequency of the dominant mode grows with the field mass μ , while the damping rate decreases, suggesting the existence of quasi-resonances at sufficiently large μ . In the time domain, the late-time signal exhibits oscillatory tails with a power-law envelope, whose decay rate matches analytic expectations. Grey-body factors are also computed, showing strong suppression of radiation when mass is increased. Taken together, these results indicate that massive fields provide distinctive signatures of regular black holes and may serve as probes of near-horizon quantum corrections in the Dymnikova geometry.

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Cite This Study

Lütfüoğlu et al. (2026) studied this question.

synapsesocial.com/papers/69c8c195de0f0f753b39be6chttps://doi.org/10.1016/j.physletb.2026.140392
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