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GRAVITATIONAL RECOIL FROM SPINNING BINARY BLACK HOLE MERGERS

机译:旋转二元黑色孔合并产生的重力反冲

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摘要

The inspiraling and merger of binary black holes will likely involve black holes with not only unequal masses but also arbitrary spins. The gravitational radiation emitted by these binaries will carry angular as well as linear momentum. A net flux of emitted linear momentum implies that the black hole produced by the merger will experience a recoil or kick. Previous studies have focused on the recoil velocity from unequal-mass, nonspinning binaries. We present results from simulations of equal-mass but spinning black hole binaries and show how a significant gravitational recoil can also be obtained in these situations. We consider the case of black holes with opposite spins of magnitude a aligned and antialigned with the orbital angular momentum, with a the dimensionless spin parameter of the individual holes. For the initial setups under consideration, we find a recoil velocity of V = 475a km s~(-1). Supermassive black hole mergers producing kicks of this magnitude could result in the ejection of the final hole produced by the collision from the core of a dwarf galaxy.
机译:二元黑洞的鼓舞和合并可能会涉及不仅质量不相等而且任意旋转的黑洞。这些双星发射的重力辐射将携带角动量和线性动量。发出的线性动量的净通量意味着合并产生的黑洞将经历反冲或反冲。先前的研究集中在不等质量,非旋转二进制的反冲速度上。我们提供了等质量但旋转的黑洞二进制文件的模拟结果,并显示了在这些情况下如何获得显着的重力反冲。我们认为具有相反大小自旋的黑洞的情况与轨道角动量对齐和反对齐,并且各个孔具有无量纲的自旋参数。对于正在考虑的初始设置,我们发现后坐速度为V = 475a km s〜(-1)。产生如此大幅度的超大质量黑洞合并可能会导致从矮星系的核心弹出由碰撞产生的最后一个洞。

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