We estimate the potential of present and future interferometric gravitational-wave detectors to test the Kerr nature of black holes through "gravitational spectroscopy," i.e., the measurement of multiple quasinormal mode frequencies from the remnant of a black hole merger. Using population synthesis models of the formation and evolution of stellar-mass black hole binaries, we find that Voyager-class interferometers will be necessary to perform these tests. Gravitational spectroscopy in the local Universe may become routine with the Einstein Telescope, but a 40-km facility like Cosmic Explorer is necessary to go beyond z similar to 3. In contrast, detectors like eLISA (evolved Laser Interferometer Space Antenna) should carry out a few-or eve...
We show that second-generation gravitational-wave detectors at their design sensitivity will allow u...
The long-sought direct detection of gravitational waves may only be a few years away, as a new gener...
The evolving Laser Interferometer Space Antenna (eLISA) will revolutionize our understanding of the ...
International audienceWe estimate the potential of present and future interferometric gravitational-...
Measuring the quasi-normal mode~(QNM) spectrum emitted by a perturbed black-hole~(BH) --~also known ...
Gravitational wave observations of the ringdown of the remnant black hole in a binary black hole coa...
We compare the science capabilities of different eLISA mission designs, including four-link (two-arm...
We estimate the expected signal-to-noise ratios (SNRs) from the three phases (inspiral, merger, and ...
Binary black holes are the most promising candidate sources for the first generation of earth-based ...
The Kerr nature of a compact-object-coalescence remnant can be unveiled by observing multiple quasi-...
Gravitational waves provide a window to probe general relativity (GR) under extreme conditions. The ...
Gravitational waves from test masses bound to geodesic orbits of rotating black holes are simulated,...
In the post-merger phase of a black hole binary system, the remnant object is a perturbed black hole...
The upcoming detection of gravitational waves by terrestrial interferometers will usher in the era o...
The last phase of black hole binary coalescences is known as the ringdown, in which the newly formed...
We show that second-generation gravitational-wave detectors at their design sensitivity will allow u...
The long-sought direct detection of gravitational waves may only be a few years away, as a new gener...
The evolving Laser Interferometer Space Antenna (eLISA) will revolutionize our understanding of the ...
International audienceWe estimate the potential of present and future interferometric gravitational-...
Measuring the quasi-normal mode~(QNM) spectrum emitted by a perturbed black-hole~(BH) --~also known ...
Gravitational wave observations of the ringdown of the remnant black hole in a binary black hole coa...
We compare the science capabilities of different eLISA mission designs, including four-link (two-arm...
We estimate the expected signal-to-noise ratios (SNRs) from the three phases (inspiral, merger, and ...
Binary black holes are the most promising candidate sources for the first generation of earth-based ...
The Kerr nature of a compact-object-coalescence remnant can be unveiled by observing multiple quasi-...
Gravitational waves provide a window to probe general relativity (GR) under extreme conditions. The ...
Gravitational waves from test masses bound to geodesic orbits of rotating black holes are simulated,...
In the post-merger phase of a black hole binary system, the remnant object is a perturbed black hole...
The upcoming detection of gravitational waves by terrestrial interferometers will usher in the era o...
The last phase of black hole binary coalescences is known as the ringdown, in which the newly formed...
We show that second-generation gravitational-wave detectors at their design sensitivity will allow u...
The long-sought direct detection of gravitational waves may only be a few years away, as a new gener...
The evolving Laser Interferometer Space Antenna (eLISA) will revolutionize our understanding of the ...