论文标题
在热磁化等离子体中未对准的旋转二进制黑洞合并
Misaligned Spinning Binary Black Hole Mergers in Hot Magnetized Plasma
论文作者
论文摘要
我们提出了嵌入磁化气云中的相等质量旋转黑洞二元合并的一般相对论磁性磁动力学模拟。我们关注旋转方向相对于轨道角动量对流动动力学,质量积聚速率和轻度发光度的影响。我们发现,跨越灵感,积聚在单个黑洞上的气体集中在类似磁盘的过度沉积中,其角动量朝向旋转轴,并一直持续到合并。我们确定在1-20%水平的质量积聚率中发生的准周期调制,与重力波chir平行演变。积聚率的时间序列与重力应变之间的相似性是灵感黑孔附近强,动力学重力场和磁场之间的相互作用的结果。该结果表明,大量二进制前的合并前积聚率中的准周期性不包括黑洞嵌入了圆形积聚磁盘中的环境,并且可以提供与低频电波层次波动层次检测的其他有用的电磁发射的有用签名。
We present general relativistic magneto-hydrodynamical simulations of equal-mass spinning black hole binary mergers embedded in a magnetized gas cloud. We focus on the effect of the spin orientation relative to the orbital angular momentum on the flow dynamics, mass accretion rate and Poynting luminosity. We find that, across the inspiral, the gas accreting onto the individual black holes concentrates into disk-like overdensities, whose angular momenta are oriented towards the spin axes and which persist until merger. We identify quasi-periodic modulations occurring in the mass accretion rate at the level of 1-20%, evolving in parallel with the gravitational wave chirp. The similarity between the accretion rate time-series and the gravitational strain is a consequence of the interplay between strong, dynamical gravitational fields and magnetic fields in the vicinity of the inspiralling black holes. This result suggests that quasi-periodicity in the pre-merger accretion rate of massive binaries is not exclusive of environments in which the black holes are embedded in a circumbinary accretion disk, and could provide an additional useful signature of electromagnetic emission concurrent to low-frequency gravitational wave detection.