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Black-hole spectroscopy: testing general relativity through gravitational-wave observations

Classical and Quantum Gravity · 2004 · Vol. 21(4) · pp. 787–803
Olaf DreyerBernard KellyB. KrishnanL. S. FinnDavid GarrisonRamon Lopez-Aleman

Abstract

Assuming that general relativity is the correct theory of gravity in the strong field limit, can gravitational wave observations distinguish between black hole and other compact object sources? Alternatively, can gravitational wave observations provide a test of one of the fundamental predictions of general relativity? Here we describe a definitive test of the hypothesis that observations of damped, sinusoidal gravitational waves originated from a black hole or, alternatively, that nature respects the general relativistic no-hair theorem. For astrophysical black holes, which have a negligible charge-to-mass ratio, the black hole quasi-normal mode spectrum is characterized entirely by the black hole mass and angular momentum and is unique to black holes. In a different theory of gravity, or if the observed radiation arises from a different source (e.g., a neutron star, strange matter or boson star), the spectrum will be inconsistent with that predicted for general relativistic black holes. We give a statistical characterization of the consistency between the noisy observation and the theoretical predictions of general relativity, together with a numerical example.

Pulsars and Gravitational Waves ResearchGamma-ray bursts and supernovaeAstrophysical Phenomena and ObservationsPhysicsGeneral relativityBlack hole (networking)Gravitational waveBinary black holeTests of general relativityNumerical relativityHawking radiationAstrophysicsClassical mechanics
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Classical and Quantum Gravity · 1999 · 1,035 citations
Unified approach to the classical statistical analysis of small signals
Physical review. D. Particles, fields, gravitation, and cosmology/Physical review. D. Particles and fields · 1998 · 3,022 citations
Stability of a Schwarzschild Singularity
Physical Review · 1957 · 2,585 citations
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