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黑洞双星中的广义相对论进动。

General-relativistic precession in a black-hole binary.

机构信息

Gravity Exploration Institute, Cardiff University, Cardiff, UK.

Departament de Física, Universitat de les Illes Balears, Palma, Spain.

出版信息

Nature. 2022 Oct;610(7933):652-655. doi: 10.1038/s41586-022-05212-z. Epub 2022 Oct 12.

Abstract

The general-relativistic phenomenon of spin-induced orbital precession has not yet been observed in strong-field gravity. Gravitational-wave observations of binary black holes (BBHs) are prime candidates, as we expect the astrophysical binary population to contain precessing binaries. Imprints of precession have been investigated in several signals, but no definitive identification of orbital precession has been reported in any of the 84 BBH observations so far by the Advanced LIGO and Virgo detectors. Here we report the measurement of strong-field precession in the LIGO-Virgo-Kagra gravitational-wave signal GW200129. The binary's orbit precesses at a rate ten orders of magnitude faster than previous weak-field measurements from binary pulsars. We also find that the primary black hole is probably highly spinning. According to current binary population estimates, a GW200129-like signal is extremely unlikely, and therefore presents a direct challenge to many current binary-formation models.

摘要

在强引力场中,尚未观察到自旋诱导轨道进动的广义相对论现象。双黑洞(BBH)的引力波观测是首选,因为我们预计天体物理双星系统中包含进动双星。在几种信号中已经研究了进动的印记,但到目前为止,高级 LIGO 和 Virgo 探测器对 84 个 BBH 观测中,没有任何一个报告明确识别出轨道进动。在这里,我们报告了在 LIGO-Virgo-Kagra 引力波信号 GW200129 中测量到的强场进动。二进制的轨道进动速度比以前来自二进制脉冲星的弱场测量快了十个数量级。我们还发现,主黑洞可能是高度旋转的。根据目前的双星种群估计,GW200129 类信号极不可能出现,因此对许多当前的双星形成模型构成了直接挑战。

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