English

Spectral Butterfly Effect and Resilient Ringdown in Thick Braneworlds

General Relativity and Quantum Cosmology 2026-04-28 v1

Abstract

The quasinormal mode spectrum is a unique fingerprint linking gravitational-wave observations to extra-dimensional geometry. In this Letter, we show that thick braneworlds exhibit a spectral butterfly effect: infinitesimal deformations of the effective potential trigger dramatic migrations of quasinormal modes, challenging the presumed stability of this fingerprint. Frequency-domain instabilities depend sensitively on the perturbation's location and strength. In the time domain, near-brane perturbations primarily modify the early ringdown, while far-brane perturbations generate clean late-time echoes. Crucially, the graviton zero mode remains localized, preserving four-dimensional gravity. Despite this pronounced spectral fragility, the observable early-stage signal under current detector sensitivities is still dominated by the original fundamental mode. Hence, thick braneworlds display a nontrivial coexistence of a fragile spectrum and a resilient ringdown, supporting the continued use of the standard fingerprint in present-day gravitational-wave astronomy while revealing its hidden sensitivity.

Keywords

Cite

@article{arxiv.2604.23364,
  title  = {Spectral Butterfly Effect and Resilient Ringdown in Thick Braneworlds},
  author = {Hai-Long Jia and Wen-Di Guo and Yu-Peng Zhang and Yu-Xiao Liu},
  journal= {arXiv preprint arXiv:2604.23364},
  year   = {2026}
}
R2 v1 2026-07-01T12:35:12.583Z