Imprint of accretion disk-induced migration on gravitational waves from extreme mass ratio inspirals
Yunes N, Kocsis B, Loeb A, Haiman Z. 2011. Imprint of accretion disk-induced migration on gravitational waves from extreme mass ratio inspirals. Physical Review Letters. 107(17), 171103.
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https://doi.org/10.48550/arXiv.1103.4609
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Author
Yunes, Nicolás;
Kocsis, Bence;
Loeb, Abraham;
Haiman, ZoltánISTA
Abstract
We study the effects of a thin gaseous accretion disk on the inspiral of a stellar--mass black hole into a supermassive black hole. We construct a phenomenological angular momentum transport equation that reproduces known disk effects. Disk torques modify the gravitational wave phase evolution to detectable levels with LISA for reasonable disk parameters. The Fourier transform of disk-modified waveforms acquires a correction with a different frequency trend than post-Newtonian vacuum terms. Such inspirals could be used to detect accretion disks with LISA and to probe their physical parameters.
Publishing Year
Date Published
2011-10-21
Journal Title
Physical Review Letters
Publisher
American Physical Society
Volume
107
Issue
17
Article Number
171103
IST-REx-ID
Cite this
Yunes N, Kocsis B, Loeb A, Haiman Z. Imprint of accretion disk-induced migration on gravitational waves from extreme mass ratio inspirals. Physical Review Letters. 2011;107(17). doi:10.1103/physrevlett.107.171103
Yunes, N., Kocsis, B., Loeb, A., & Haiman, Z. (2011). Imprint of accretion disk-induced migration on gravitational waves from extreme mass ratio inspirals. Physical Review Letters. American Physical Society. https://doi.org/10.1103/physrevlett.107.171103
Yunes, Nicolás, Bence Kocsis, Abraham Loeb, and Zoltán Haiman. “Imprint of Accretion Disk-Induced Migration on Gravitational Waves from Extreme Mass Ratio Inspirals.” Physical Review Letters. American Physical Society, 2011. https://doi.org/10.1103/physrevlett.107.171103.
N. Yunes, B. Kocsis, A. Loeb, and Z. Haiman, “Imprint of accretion disk-induced migration on gravitational waves from extreme mass ratio inspirals,” Physical Review Letters, vol. 107, no. 17. American Physical Society, 2011.
Yunes N, Kocsis B, Loeb A, Haiman Z. 2011. Imprint of accretion disk-induced migration on gravitational waves from extreme mass ratio inspirals. Physical Review Letters. 107(17), 171103.
Yunes, Nicolás, et al. “Imprint of Accretion Disk-Induced Migration on Gravitational Waves from Extreme Mass Ratio Inspirals.” Physical Review Letters, vol. 107, no. 17, 171103, American Physical Society, 2011, doi:10.1103/physrevlett.107.171103.
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arXiv 1103.4609