Gravitational-wave signature of an inspiral into a supermassive horizonless object
- 10 February 2005
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review D
- Vol. 71 (4) , 044015
- https://doi.org/10.1103/physrevd.71.044015
Abstract
Event horizons are among the most intriguing of general relativity's predictions. Although on firm theoretical footing, direct indications of their existence have yet to be observed. With this motivation in mind, we explore here the possibility of finding a signature for event horizons in the gravitational waves (GWs) produced during the inspiral of stellar-mass compact objects (COs) into the supermassive () objects that lie at the center of most galaxies. Such inspirals will be a major source for LISA, the future space-based GW observatory. We contrast supermassive black holes with models in which the central object is a supermassive boson star (SMBS). Provided the COs interact only gravitationally with the SMBS, stable orbits exist not just outside the Schwarzschild radius but also inside the surface of the SMBS as well. The absence of an event horizon allows GWs from these orbits to be observed. Here we solve for the metric in the interior of a fairly generic class of SMBS and evolve the trajectory of an inspiraling CO from the Schwarzschild exterior through the plunge into the exotic SMBS interior. We calculate the approximate waveforms for GWs emitted during this inspiral. Geodesics within the SMBS surface will exhibit extreme pericenter precession and other features making the emitted GWs readily distinguishable from those emitted during an inspiral into a black hole.
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This publication has 24 references indexed in Scilit:
- Constraining Alternate Models of Black Holes: Type I X‐Ray Bursts on Accreting Fermion‐Fermion and Boson‐Fermion StarsThe Astrophysical Journal, 2004
- Supermassive boson star at the galactic center?Physical Review D, 2000
- Viewing the Shadow of the Black Hole at the Galactic CenterThe Astrophysical Journal, 2000
- The gravitational redshift of boson starsPhysics Letters B, 1997
- Estimating the detectable rate of capture of stellar mass black holes by massive central black holes in normal galaxiesClassical and Quantum Gravity, 1997
- Spinning boson stars with large self-interactionPhysical Review D, 1997
- Detection of compact ultraviolet nuclear emission in liner galaxiesThe Astrophysical Journal, 1995
- Nontopological solitonsPhysics Reports, 1992
- Mini-soliton starsPhysical Review D, 1987
- Boson Stars: Gravitational Equilibria of Self-Interacting Scalar FieldsPhysical Review Letters, 1986