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High accuracy measurement of gravitational wave back-reaction in the OJ287 black hole binary

机译:高精度测量OJ287黑洞二进制中的重力波反应

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Blazar OJ287 exhibits large thermal flares at least twice every 12 years. The times of these flares have been predicted successfully using the model of a quasi-Keplerian eccentric black hole binary where the secondary impacts the accretion disk of the primary, creating the thermal flares. New measurements of the historical light curve have been combined with the observations of the 2015 November/December flare to identify the impact record since year 1886, and to constrain the orbit of the binary. The orbital solution shows that the binary period, now 12.062 years, is decreasing at the rate of 36 days per century. This corresponds to an energy loss to gravitational waves that is 6.5 ± 4 % less than the rate predicted by the standard quadrupolar gravitational wave (GW) emission. We show that the difference is due to higher order gravitational radiation reaction terms that include the dominant order tail contributions.
机译:Blazar OJ287每12年至少两次展示大型热耀斑。已经使用次级偏心偏心黑洞二进制二进制模型成功地预测了这些耀斑的时间,其中次级冲击初级的吸积盘,从而产生热耀斑。历史光线曲线的新测量已与2015年11月/ 12月Flare的观察结果相结合,以确定自1886年年度以来的影响记录,并限制二元轨道。轨道解决方案表明,二进制期间,现在12.062年,每世纪36天的速度下降。这对应于引力波的能量损失,其比标准四极重力波(GW)发射所预测的速率小6.5±4%。我们表明,差异是由于更高阶的重力辐射反应术语,包括主要秩序尾部贡献。

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