Gravitational Wave Ringdown Analysis Using the F -statistic

Hai-Tian Wang, Garvin Yim, Xian Chen and Lijing Shao
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Abstract

After the final stage of the merger of two black holes (BHs), the ringdown signal takes an important role in providing information about the gravitational dynamics in strong field. We introduce a novel time-domain (TD) approach, predicated on the -statistic, for ringdown analysis. This method diverges from traditional TD techniques in that its parameter space remains constant irrespective of the number of modes incorporated. This feature is achieved by reconfiguring the likelihood and analytically maximizing over the extrinsic parameters that encompass the amplitudes and reference phases of all modes. Consequently, when performing the ringdown analysis under the assumption that the ringdown signal is detected by the Einstein Telescope, the parameter estimation computation time is shortened by at most 5 orders of magnitude compared to the traditional TD method. We further establish that traditional TD methods become difficult when including multiple overtone modes due to close oscillation frequencies and damping times across different overtone modes. Encouragingly, this issue is effectively addressed by our new TD technique. The accessibility of this new TD method extends to a broad spectrum of research and offers flexibility for various topics within BH spectroscopy applicable to both current and future gravitational wave detectors.
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利用 F 统计量进行引力波环比分析
在两个黑洞(BHs)合并的最后阶段,环落信号在提供强场引力动力学信息方面发挥着重要作用。我们引入了一种基于-统计量的新型时域(TD)方法来进行环落分析。这种方法与传统的 TD 技术不同,它的参数空间保持不变,而与模式的数量无关。这一特点是通过重新配置似然和分析最大化包含所有模式振幅和参考相位的外参数实现的。因此,在假定爱因斯坦望远镜检测到降环信号的情况下进行降环分析时,参数估计计算时间比传统的 TD 方法最多缩短 5 个数量级。我们进一步确定,由于不同泛音模式的振荡频率和阻尼时间接近,当包含多个泛音模式时,传统的 TD 方法会变得困难。令人鼓舞的是,我们的新 TD 技术有效地解决了这一问题。这种新的 TD 方法适用于广泛的研究领域,并为适用于当前和未来引力波探测器的 BH 光谱学中的各种课题提供了灵活性。
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