Echoes from backreacting exotic compact objects
arXiv:2205.14170 · doi:10.1103/PhysRevD.107.044027
Abstract
The possible detection of echoes in late gravitational-wave signals is the most promising way to test horizonless alternatives to general relativistic black holes, and probe the physics of these hypothetical ultra-compact objects. While there is currently no evidence for the presence of such signatures, better accuracy is expected with the growing wealth of data from gravitational waves observatories. So far, several searches for these specific signals have been performed considering equidistant intervals between consecutive echoes, i.e. quasi-periodic wave-forms, and ignoring possible backreaction effects of the incoming waves. Here we study scalar perturbations in exotic compact object scenarios that account for possible backreaction phenomena. In particular, we find that if one considers the increase of the central object mass due to the partial absorption of the energy carried by the perturbation, the echo signal can be quite different and non-periodic. Apart from this simple scenario, we also consider the case in which, in order to preserve its compactness above the black hole limit, the compact object absorption shuts down in a finite amount of time or leads to an expansion. In both these cases we find interesting new features that should be taken into account in future searches.
12 pages, 5 figures
References in corpus (6)
- Echoes of ECOs: gravitational-wave signatures of exotic compact objects and of quantum corrections at the horizon scale
- Light ring stability in ultra-compact objects
- Tests for the existence of horizons through gravitational wave echoes
- A recipe for echoes from exotic compact objects
- Ergoregion instability of ultra-compact astrophysical objects
- Light rings of stationary spacetimes
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- Black-hole spectroscopy: quasinormal modes, ringdown stability and the pseudospectrum
- Quasinormal modes of slowly-spinning horizonless compact objects
- Whispers from the quantum core: the ringdown of semiclassical stars
- Model-independent search for the quasinormal modes of gravitational wave echoes
- Black hole spectroscopy and nonlinear echoes in Einstein-Maxwell-scalar theory
- Spectral instability of horizonless compact objects within astrophysical environments
- From de Sitter to anti-de Sitter singularity regularization: Theory and phenomenology
- Splitting the Echoes of Black Holes in Einstein-nonlinear Electrodynamic Theories
- Regular Black Hole Cores via Gravitational Evanescence of Collapsing Matter
- Model-agnostic search of gravitational wave echoes in LVK data