Extreme mass ratio inspiral

Results: 5



#Item
1Astronomy / General relativity / Gravitational-wave astronomy / Physics / Black holes / Galaxies / Gravitation / Extreme mass ratio inspiral / Gravitational wave / Evolved Laser Interferometer Space Antenna / Gravitational-wave observatory / Supermassive black hole

INSTITUTE OF PHYSICS PUBLISHING CLASSICAL AND QUANTUM GRAVITY Class. Quantum GravS1595–S1606

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Source URL: sciencejedi.com

Language: English - Date: 2014-01-14 01:29:45
2Astronomy / General relativity / Space observatories / Physics / Astrophysics / Gravitation / Gravitational-wave astronomy / Observational astronomy / Parameter / Evolved Laser Interferometer Space Antenna / Extreme mass ratio inspiral

The Mock LISA Data Challenges: from Challenge 1B to Challenge 3

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Source URL: sciencejedi.com

Language: English - Date: 2014-01-14 01:31:06
3Orbits / General relativity / Astronomy / Black holes / Celestial mechanics / Exact solutions in general relativity / Kepler orbit / Gravitational wave / Extreme mass ratio inspiral / Eccentricity / Specific orbital energy / Schwarzschild geodesics

The Astrophysical Journal, 639:999–1006, 2006 March 10 # 2006. The American Astronomical Society. All rights reserved. Printed in U.S.A. GRAVITATIONAL RADIATION TIMESCALES FOR EXTREME MASS RATIO INSPIRALS Jonathan R. G

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Source URL: sciencejedi.com

Language: English - Date: 2014-01-14 01:28:38
4General relativity / Electrical engineering / Astronomy / Signal processing / Gravitational-wave astronomy / Black holes / Space observatories / Extreme mass ratio inspiral / Evolved Laser Interferometer Space Antenna / Matched filter / Estimation theory / Signal-to-noise ratio

Report on the second Mock LISA data challenge

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Source URL: sciencejedi.com

Language: English - Date: 2014-01-14 01:31:00
5Orbits / Physics / General relativity / Black holes / Celestial mechanics / Exact solutions in general relativity / Orbit / Gravitational wave / Schwarzschild geodesics / Extreme mass ratio inspiral / Kepler orbit / Hyperbolic trajectory

PHYSICAL REVIEW D 72, Semirelativistic approximation to gravitational radiation from encounters with nonspinning black holes Jonathan R. Gair* Theoretical Astrophysics, California Institute of Technology,

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Source URL: sciencejedi.com

Language: English - Date: 2014-01-14 01:32:53
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