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Detection of Gravitational Wave Emission by Supermassive Black Hole Binaries Through Tidal Disruption Flares

机译:利用超大质量黑洞双星通过潮汐干扰耀斑探测引力波发射。

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摘要

Galaxy mergers produce supermassive black hole binaries, which emit gravitational waves prior to their coalescence. We perform three-dimensional hydrodynamic simulations to study the tidal disruption of stars by such a binary in the final centuries of its life. We find that the gas stream of the stellar debris moves chaotically in the binary potential and forms accretion disks around both black holes. The accretion light curve is modulated over the binary orbital period owing to relativistic beaming. This periodic signal allows to detect the decay of the binary orbit due to gravitational wave emission by observing two tidal disruption events that are separated by more than a decade.
机译:银河合并产生了超质量黑洞双星,它们在合并之前会发射出引力波。我们执行三维流体动力学模拟,以研究恒星在生命的最后几个世纪中由这种双星引起的潮汐破坏。我们发现,恒星碎片的气流在二元电位中混沌运动,并在两个黑洞周围形成了吸积盘。由于相对论光束,在二进制轨道周期内调制了吸积光曲线。通过观察两个相隔十多年的潮汐扰动事件,该周期性信号允许检测由于重力波发射而引起的二元轨道的衰变。

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