2025
Black Hole in the Quantum Oppenheimer-Snyder Model: Long Lived Modes and the Overtones' Behavior
ZINHAILO, Antonina FrantsivnaBasic information
Original name
Black Hole in the Quantum Oppenheimer-Snyder Model: Long Lived Modes and the Overtones' Behavior
Authors
Edition
FORTSCHRITTE DER PHYSIK-PROGRESS OF PHYSICS, 2025, 0015-8208
Other information
Language
English
Type of outcome
Article in a journal
Field of Study
10308 Astronomy
Country of publisher
Germany
Confidentiality degree
is not subject to a state or trade secret
References:
Impact factor
Impact factor: 7.800 in 2024
Organization unit
Institute of physics in Opava
UT WoS
001590882300001
Keywords in English
black holes;Frobenius method;quantum gravity;Quasinormal modes
Tags
Tags
International impact, Reviewed
Changed: 13/1/2026 11:28, Mgr. Pavlína Jalůvková
Abstract
In the original language
A quantum-corrected black hole metric has been derived in [Lewandowski et al., Phys. Rev. Lett. 130 (2023) 10, 101501] within the context of the quantum Oppenheimer-Snyder model inspired by loop quantum cosmology. Using the Frobenius method, we have obtained precise values for the fundamental quasinormal modes and the first few overtones for scalar and electromagnetic perturbations. Our results reveal that, unlike the fundamental mode, the overtones exhibit high sensitivity to quantum corrections, leading to qualitatively new spectral behavior. Notably, our findings suggest that modes with real oscillation frequencies approaching zero appear in the spectrum. The existence of arbitrarily long-lived modes, known as quasi-resonances is also demonstrated.