论文标题
中间质量比率中有效的一体波形的数值余量验证
Numerical-relativity validation of effective-one-body waveforms in the intermediate-mass-ratio regime
论文作者
论文摘要
为重力波天文学开发二元黑洞(BBH)波形的开放问题之一是对中间质量比率进行建模并将其连接到极端质量比率。一种自然的方法是将有效的一个体(EOB)方法用于两体动力学,通过设计可以覆盖整个质量比范围,并自然融合了极端质量比的极限。在这里,我们使用质量比$ M_1/M_2 =(7,15,\,32,32,\,64,\,128)$最近获得的数值相对论(NR)数据来测试中间质量比率中最先进的EOB模型TeoBresums的准确性。我们通常在所有质量比和所有可用的亚辅助多尔斯的合并和环down上找到出色的EOB/NR一致性,除了$ \ ell = M = 5 $一个。使用本文的新大质量比率NR数据可以至关重要地改进此模式。 EOB/NR灵感也与估计的NR不确定性一致。我们还使用不同的公共目录采集的几个NR数据集来探测合并时波形振幅的多极层次结构的普遍行为,从而平稳将相等的质量BBH连接到测试量结果。有趣的是,如果非振荡记忆贡献包括在NR波形中,则可以加强普遍的行为。对于进一步的探测,并且可能在数量上进行了细化,将需要提高精度的未来NR模拟,从后期的Inspiral到中间质量比率的趋势。
One of the open problems in developing binary black hole (BBH) waveforms for gravitational wave astronomy is to model the intermediate mass ratio regime and connect it to the extreme mass ratio regime. A natural approach is to employ the effective one body (EOB) approach to the two-body dynamics that, by design, can cover the entire mass ratio range and naturally incorporates the extreme mass ratio limit. Here we use recently obtained numerical relativity (NR) data with mass ratios $m_1/m_2=(7,15,\,32,\,64,\,128)$ to test the accuracy of the state-of-the-art EOB model TEOBResumS in the intermediate mass ratio regime. We generally find an excellent EOB/NR consistency around merger and ringdown for all mass ratios and for all available subdominant multipoles, except for the $\ell=m=5$ one. This mode can be crucially improved using the new large-mass ratio NR data of this paper. The EOB/NR inspirals are also consistent with the estimated NR uncertainties. We also use several NR datasets taken by different public catalogs to probe the universal behavior of the multipolar hierarchy of waveform amplitudes at merger, that smoothly connects the equal-mass BBH to the test-mass result. Interestingly, the universal behavior is strengthened if the nonoscillatory memory contribution is included in the NR waveform. Future NR simulations with improved accuracy will be necessary to further probe, and possibly quantitatively refine, the TEOBResumS transition from late inspiral to plunge in the intermediate mass ratio regime.