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Brightening of an Accretion Disk Due to Viscous Dissipation of Gravitational Waves During the Coalescence of Supermassive Black Holes

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arxiv 0803.0003 v2 pith:SJUUFDEK submitted 2008-03-03 astro-ph gr-qchep-ph

classification astro-phgr-qchep-ph
keywords accretionpowerblackdissipatedgravitationalratesupermassiveviscosity
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Mergers of supermassive black hole binaries release peak power of up to ~10^57 erg/s in gravitational waves (GWs). As the GWs propagate through ambient gas, they induce shear and a small fraction of their power is dissipated through viscosity. The dissipated heat appears as electromagnetic (EM) radiation, providing a prompt EM counterpart to the GW signal. For thin accretion disks, the GW heating rate exceeds the accretion power at distances farther than 10^3 Schwarzschild radii, independently of the accretion rate and viscosity coefficient.

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  1. The dynamical response of viscous objects to gravitational waves

    gr-qc 2024-11 conditional novelty 6.0 of 10

    First fully relativistic calculation of gravitational wave scattering and oscillation modes of viscous stars: viscosity absorbs high-frequency waves, and maximally viscous, near-maximum-compactness stars mimic black h...

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