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Intermediate and extreme mass-ratio inspirals—astrophysics, science applications and detection using LISA

Classical and Quantum Gravity · 2007 · Vol. 24(17) · pp. R113–R169
Pau Amaro‐SeoaneJ. R. GairMarc FreitagM. Coleman MillerIlya MandelCurt CutlerS. Babak

Abstract

Black hole binaries with extreme (gtrsim104:1) or intermediate (~102–104:1) mass ratios are among the most interesting gravitational wave sources that are expected to be detected by the proposed laser interferometer space antenna (LISA). These sources have the potential to tell us much about astrophysics, but are also of unique importance for testing aspects of the general theory of relativity in the strong field regime. Here we discuss these sources from the perspectives of astrophysics, data analysis and applications to testing general relativity, providing both a description of the current state of knowledge and an outline of some of the outstanding questions that still need to be addressed. This review grew out of discussions at a workshop in September 2006 hosted by the Albert Einstein Institute in Golm, Germany.

Pulsars and Gravitational Waves ResearchAstrophysics and Cosmic PhenomenaGamma-ray bursts and supernovaePhysicsGeneral relativityGravitational waveAstronomyAstrophysicsTheoretical physicsInterferometryTheory of relativity
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References
Multipole moments of stationary space-times
Journal of Mathematical Physics · 1974 · 571 citations
The Demography of Massive Dark Objects in Galaxy Centers
The Astronomical Journal · 1998 · 3,737 citations
Spinning test-particles in general relativity. I
Proceedings of the Royal Society of London A Mathematical and Physical Sciences · 1951 · 1,067 citations
How Massive Single Stars End Their Life
The Astrophysical Journal · 2003 · 2,041 citations
Hamilton-Jacobi and Schrodinger Separable Solutions of Einstein’s Equations
Communications in Mathematical Physics · 1968 · 1,040 citations
Gravitational-wave spectroscopy of massive black holes with the space interferometer LISA
Physical review. D. Particles, fields, gravitation, and cosmology/Physical review. D, Particles, fields, gravitation, and cosmology · 2006 · 838 citations
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