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新型衰荡振幅-相位一致性测试

Novel Ringdown Amplitude-Phase Consistency Test.

作者信息

Forteza Xisco Jiménez, Bhagwat Swetha, Kumar Sumit, Pani Paolo

机构信息

Max Planck Institute for Gravitational Physics (Albert Einstein Institute), Callinstraße 38, 30167 Hannover, Germany.

Leibniz Universität Hannover, 30167 Hannover, Germany.

出版信息

Phys Rev Lett. 2023 Jan 13;130(2):021001. doi: 10.1103/PhysRevLett.130.021001.

DOI:10.1103/PhysRevLett.130.021001
PMID:36706405
Abstract

The ringdown signal emitted during a binary black hole coalescence can be modeled as a linear superposition of the characteristic damped modes of the remnant black hole that get excited during the merger phase. While checking the consistency of the measured frequencies and damping times against the Kerr BH spectrum predicted by general relativity (GR) is a cornerstone of strong-field tests of gravity, the consistency of measured excitation amplitudes and phases have been largely left unexplored. For a nonprecessing, quasicircular binary black hole merger, we find that GR predicts a narrow region in the space of mode amplitude ratio and phase difference, independently of the spin of the binary components. Using this unexpected result, we develop a new null test of strong-field gravity which demands that the measured amplitudes and phases of different ringdown modes should lie within this narrow region predicted by GR. We call this the amplitude-phase consistency test and introduce a procedure for performing it using information from the ringdown signal. Lastly, we apply this test to the GW190521 event, using the multimodal ringdown parameters inferred by Capano et al. [arXiv:2105.05238]. While ringdown measurements errors for this event are large, we show that GW190521 is consistent with the amplitude-phase consistency test. Our test is particularly well suited for accommodating multiple loud ringdown detections as those expected in the near future, and can be used complementarily to standard black-hole spectroscopy as a proxy for modified gravity, compact objects other than black holes, binary precession and eccentricity.

摘要

在双黑洞合并过程中发出的铃宕信号可以建模为在合并阶段被激发的残余黑洞特征阻尼模式的线性叠加。虽然将测量的频率和阻尼时间与广义相对论(GR)预测的克尔黑洞光谱进行一致性检验是引力强场测试的基石,但测量的激发振幅和相位的一致性在很大程度上尚未得到探索。对于一个非进动的、准圆形的双黑洞合并,我们发现广义相对论预测了模式振幅比和相位差空间中的一个狭窄区域,与双组件的自旋无关。利用这一意外结果,我们开发了一种新的强场引力零检验,要求不同铃宕模式的测量振幅和相位应位于广义相对论预测的这个狭窄区域内。我们将此称为振幅 - 相位一致性检验,并介绍了一种使用铃宕信号信息来执行该检验的程序。最后,我们将此检验应用于GW190521事件,使用卡帕诺等人[arXiv:2105.05238]推断的多模式铃宕参数。虽然该事件的铃宕测量误差很大,但我们表明GW190521与振幅 - 相位一致性检验一致。我们的检验特别适合于适应未来可能出现的多个响亮的铃宕探测,并且可以作为标准黑洞光谱学的补充,用于检验修正引力、黑洞以外的致密天体、双进动和偏心率。

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