论文标题

来自黑洞二进制的动力捕获的有效一体波形

Effective-one-body waveforms from dynamical captures in black hole binaries

论文作者

Nagar, Alessandro, Rettegno, Piero, Gamba, Rossella, Bernuzzi, Sebastiano

论文摘要

动态捕获是BBH合并的可能形成通道,导致高度偏心的合并动力学和引力波(GW)信号在形态上与准圆圈合并的信号不同。通过基于地面或空间的GW干涉仪对这些合并的未来检测可以为天体物理黑洞提供宝贵的见解,但它需要精确的预测和专用波形模型来进行分析。我们提供了一个有效的一体(EOB)模型,该模型来自具有任意质量比率和非廉价自旋的动态捕获黑洞合并的多极合并波形。该模型依赖于沿通用轨道的辐射反应和波形的分析描述,这些轨道是通过将通用的牛顿预成型物掺入准圆圈中的表达式中获得的。它提供了一种用于生成通用二进制黑洞合并和GW数据分析的波形的工具。我们证明,该模型可靠地说明了动态捕获的丰富现象学,从直接跌落到连续的亲密接触再到合并。参数空间是根据初始能量和角动量充分表征的。我们的模型从十个相等质量,非螺旋,双曲线相遇数值(NR)模拟的散射角度繁殖到几个百分比。可以通过将6PN值纳入当前未知的分析参数中的EOB势和调整中,进一步提高该协议。我们的结果表明,可以使用双曲线相遇(以及动态捕获)的NR模拟为通用BBH合并/接触器提供EOB波形模型,以供当前和将来的GW检测器。

Dynamical capture is a possible formation channel for BBH mergers leading to highly eccentric merger dynamics and to gravitational wave (GW) signals that are morphologically different from those of quasi-circular mergers. The future detection of these mergers by ground-based or space-based GW interferometers can provide invaluable insights on astrophysical black holes, but it requires precise predictions and dedicated waveform models for the analysis. We present a state-of-the-art effective-one-body (EOB) model for the multipolar merger-ringdown waveform from dynamical capture black-hole mergers with arbitrary mass-ratio and nonprecessing spins. The model relies on analytical descriptions of the radiation reaction and waveform along generic orbits that are obtained by incorporating generic Newtonian prefactors in the expressions used in the quasi-circular case. It provides a tool for generating waveforms for generic binary black hole coalescences and for GW data analysis. We demonstrate that the model reliably accounts for the rich phenomenology of dynamical captures, from direct plunge to successive close encounters up to merger. The parameter space is fully characterized in terms of the initial energy and angular momentum. Our model reproduces to few percent the scattering angle from ten equal-mass, nonspinning, hyperbolic encounter numerical-relativity (NR) simulations. The agreement can be further improved to the by incorporating 6PN-results in one of the EOB potentials and tuning currently unknown analytical parameters. Our results suggest that NR simulations of hyperbolic encounters (and dynamical captures) can be used to inform EOB waveform models for generic BBH mergers/encounters for present and future GW detectors.

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