Large gravitational wave phase shifts from strong three-body interactions in dense stellar clusters
致密星团中强三体相互作用导致的大引力波相位偏移
The phase evolution of gravitational waves (GWs) can be modulated by the astrophysical environment surrounding the source, which provides a probe for the origin of individual binary black holes (BBHs) using GWs alone. We here study the evolving phase of the GW waveform derived from a large set of simulations of BBH mergers forming in dense stellar clusters through binary-single interactions. We uncover that a well-defined fraction of the assembled eccentric GW sources will have a notable GW phase shift induced by the remaining third object. The magnitude of the GW phase shift often exceeds conservative analytical estimates due to strong three-body interactions, which occasionally results in GW sources with clearly shifted and perturbed GW waveforms. This opens up promising opportunities for current and future GW detectors, as observing such a phase shift can identify the formation environment of a BBH, as well as help to characterise the local properties of its surrounding environment.
展开 ▾对大量双星-单星散射的 PN 模拟显示,混沌三体过程可让第三体比初始分离更靠近并合双星,产生从约 0.01 rad 到接近 1 rad 的相移,突破线性解析上限;这些源主要落在 1–10 Hz 第三代探测器频带,提供单事件识别动力学形成渠道的可能。
过去对引力波相位偏移的讨论多从三体系统视线加速度出发 Meiron+ 2017,Samsing+ 2024 进一步给出偏心 BBH 的解析相移估计;但其线性极限预测的最大值仅约 10^-2 rad。本文通过大量后牛顿双星-单星散射模拟,发现强三体混沌过程可将第三体带到并合双星极近处,产生超过解析上限的 0.01–1 rad 相移,且主要集中在 1–10 Hz 的第三代探测器频带。这使三体并合这一已知星团偏心源子类 Samsing 2018 成为潜在的单事件环境探针。未来可结合注入研究与更精细波形模型,并将方法推广至 AGN 盘等更紧凑环境 Tagawa+ 2026,以量化可探测性与反演三体轨道性质。
预印本 2024-11-13 · 刊出 2026-08-28 · 收录 2026-09-06