The black hole uniqueness and the no-hair theorems imply that the quasinormal spectrum of any astrophysical black hole is determined solely by its mass and spin. The countably infinite number of quasinormal modes of a Kerr black hole are thus related to each other, and any deviations from these relations provide a strong hint for physics beyond the general theory of relativity. To test the no-hair theorem using ringdown signals, it is necessary to detect at least two quasinormal modes. In particular, one can detect the fundamental mode along with a subdominant overtone or with another angular mode, depending on the mass ratio and the spins of the progenitor binary. Also in the light of the recent discovery of GW190412, studying how the mass...
The quasi normal modes (QNMs) associated with gravitational-wave signals from binary black hole (BBH...
The last phase of black hole binary coalescences is known as the ringdown, in which the newly formed...
One of the consequences of the black-hole “no-hair” theorem in general relativity (GR) is that gravi...
Validating the black-hole no-hair theorem with gravitational-wave observations of compact binary coa...
The ringdown is the late part of the post-merger signature emitted during the coalescence of two bla...
It is possible to infer the mass and spin of the remnant black hole from binary black hole mergers b...
We analyze gravitational-wave data from the first LIGO detection of a binary black-hole merger (GW15...
Gravitational wave observations of the ringdown of the remnant black hole in a binary black hole coa...
Perturbed Kerr black holes emit gravitational radiation, which (for the practical purposes of gravit...
It is possible to infer the mass and spin of the remnant black hole from binary black hole mergers b...
We provide strong observational evidence for a multimode black hole ringdown spectrum, using the gra...
Distorted black holes radiate gravitational waves. In the so-called ringdown phase radiation is emit...
The direct discovery of gravitational waves from compact binary systems leads for the first time to ...
Gravitational waves provide a window to probe general relativity (GR) under extreme conditions. The ...
© 2019 American Physical Society. The coalescence of two black holes generates gravitational waves t...
The quasi normal modes (QNMs) associated with gravitational-wave signals from binary black hole (BBH...
The last phase of black hole binary coalescences is known as the ringdown, in which the newly formed...
One of the consequences of the black-hole “no-hair” theorem in general relativity (GR) is that gravi...
Validating the black-hole no-hair theorem with gravitational-wave observations of compact binary coa...
The ringdown is the late part of the post-merger signature emitted during the coalescence of two bla...
It is possible to infer the mass and spin of the remnant black hole from binary black hole mergers b...
We analyze gravitational-wave data from the first LIGO detection of a binary black-hole merger (GW15...
Gravitational wave observations of the ringdown of the remnant black hole in a binary black hole coa...
Perturbed Kerr black holes emit gravitational radiation, which (for the practical purposes of gravit...
It is possible to infer the mass and spin of the remnant black hole from binary black hole mergers b...
We provide strong observational evidence for a multimode black hole ringdown spectrum, using the gra...
Distorted black holes radiate gravitational waves. In the so-called ringdown phase radiation is emit...
The direct discovery of gravitational waves from compact binary systems leads for the first time to ...
Gravitational waves provide a window to probe general relativity (GR) under extreme conditions. The ...
© 2019 American Physical Society. The coalescence of two black holes generates gravitational waves t...
The quasi normal modes (QNMs) associated with gravitational-wave signals from binary black hole (BBH...
The last phase of black hole binary coalescences is known as the ringdown, in which the newly formed...
One of the consequences of the black-hole “no-hair” theorem in general relativity (GR) is that gravi...