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首页> 外文期刊>The Astrophysical journal >LONG-TERM EVOLUTION OF MASSIVE BLACK HOLE BINARIES
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LONG-TERM EVOLUTION OF MASSIVE BLACK HOLE BINARIES

机译:大量黑洞双星的长期演化

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摘要

The long-term evolution of massive black hole binaries at the centers of galaxies is studied in a variety of physical regimes, with the aim of resolving the "final parsec problem," i.e., how black hole binaries manage to shrink to separations at which emission of gravity waves becomes efficient. A binary ejects stars by the gravitational slingshot and carves out a loss cone in the host galaxy. Continued decay of the binary requires a refilling of the loss cone. We show that the standard treatment of loss cone refilling, derived for collisionally relaxed systems like globular clusters, can substantially underestimate the refilling rates in galactic nuclei. We derive expressions for nonequilibrium loss cone dynamics and calculate timescales for the decay of massive black hole binaries following galaxy mergers, obtaining significantly higher decay rates than heretofore. Even in the absence of two-body relaxation, decay of binaries can persist as a result of repeated ejection of stars returning to the nucleus on eccentric orbits. We show that this recycling of stars leads to a gradual, approximately logarithmic dependence of the binary binding energy on time. We derive an expression for the loss cone refilling induced by the Brownian motion of a black hole binary. We also show that numerical N-body experiments are not well suited to probe these mechanisms over long times as a result of spurious relaxation.
机译:在各种物理状态下研究了星系中心大质量黑洞双星的长期演化,目的是解决“最终差距问题”,即黑洞双星如何设法缩小到发射时的间隔的重力波变得高效。双星通过引力弹弓射出恒星,并在宿主星系中切出一个损耗锥。二进制文件的持续衰减需要重新填充损耗锥。我们表明,对于球状星团之类的碰撞松弛系统而言,损失圆锥体充填的标准处理方法可能会大大低估银河核的充填率。我们推导了非平衡损失锥动力学的表达式,并计算了星系合并后大量黑洞双星衰变的时间尺度,从而获得了比以往更高的衰变率。即使没有两体弛豫,由于在恒心轨道上反复返回恒星返回恒星,恒星的衰变仍会持续。我们证明了恒星的这种循环导致二进制结合能随时间逐渐接近对数。我们推导了一个由黑洞二进制的布朗运动引起的损失锥重新填充的表达式。我们还显示,由于伪弛豫,数值N体实验不太适合长时间探测这些机制。

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