论文标题

通过顺序调理来限制黑洞二元旋转进动和营养

Constraining black-hole binary spin precession and nutation with sequential prior conditioning

论文作者

Gangardt, Daria, Gerosa, Davide, Kesden, Michael, De Renzis, Viola, Steinle, Nathan

论文摘要

我们研究了使用当前重力波数据合并黑孔二进制文件中亚显性自旋效应的可检测性。使用将自旋动力学分离为进动(方位运动)和活动(极性运动)的现象学模型,我们对所得幅度和频率提出了约束。我们还探索了对自旋形态的当前限制,表明二进制是否被困在自旋轨道共振附近。我们使用顺序的先验调节方法从信号中剖析了这种弱效应,其中参数从其后验分布逐渐重采样。这使我们能够调查数据是否包含其他信息超出了更好测量的数量所提供的信息,即质量和有效旋转。对于当前事件的目录,我们发现没有明显测量弱自旋效应,例如螺旋和旋转轨道锁定。我们合成一个具有高营养幅度的来源,并表明近未实现的检测将使我们能够放置强大的约束,这暗示我们可能处于在重力波数据中检测旋转营养的尖峰。

We investigate the detectability of sub-dominant spin effects in merging black-hole binaries using current gravitational-wave data. Using a phenomenological model that separates the spin dynamics into precession (azimuthal motion) and nutation (polar motion), we present constraints on the resulting amplitudes and frequencies. We also explore current constraints on the spin morphologies, indicating if binaries are trapped near spin-orbit resonances. We dissect such weak effects from the signals using a sequential prior conditioning approach, where parameters are progressively re-sampled from their posterior distribution. This allows us to investigate whether the data contain additional information beyond what is already provided by quantities that are better measured, namely the masses and the effective spin. For the current catalog of events, we find no significant measurements of weak spin effects such as nutation and spin-orbit locking. We synthesize a source with a high nutational amplitude and show that near-future detections will allow us to place powerful constraints, hinting that we may be at the cusp of detecting spin nutations in gravitational-wave data.

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