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Hierarchical data-driven approach to fitting numerical relativity data for nonprecessing binary black holes with an application to final spin and radiated energy

机译:分层数据驱动方法,用于拟合非继有形的二进制黑洞的数值相对性数据,其应用于最终旋转和辐射能量

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摘要

Numerical relativity is an essential tool in studying the coalescence of binary black holes (BBHs). It is still computationally prohibitive to cover the BBH parameter space exhaustively, making phenomenological fitting formulas for BBH waveforms and final-state properties important for practical applications. We describe a general hierarchical bottom-up fitting methodology to design and calibrate fits to numerical relativity simulations for the three-dimensional parameter space of quasicircular nonprecessing merging BBHs, spanned by mass ratio and by the individual spin components orthogonal to the orbital plane. Particular attention is paid to incorporating the extreme-mass-ratio limit and to the subdominant unequalspin effects. As an illustration of the method, we provide two applications, to the final spin and final mass (or equivalently: radiated energy) of the remnant black hole. Fitting to 427 numerical relativity simulations, we obtain results broadly consistent with previously published fits, but improving in overall accuracy and particularly in the approach to extremal limits and for unequal-spin configurations. We also discuss the importance of data quality studies when combining simulations from diverse sources, how detailed error budgets will be necessary for further improvements of these already highly accurate fits, and how this first detailed study of unequal-spin effects helps in choosing the most informative parameters for future numerical relativity runs.
机译:数值相对论是研究二元黑洞(BBHS)的聚结的重要工具。令人遗憾的是覆盖BBH参数空间仍然可以计算出,使得BBH波形的现象学拟合公式和对实际应用的最终性能很重要。我们描述了一种设计和校准的一般分层自下而上拟合方法,适合对数值不适应合并BBHS的三维参数空间的数值相对性模拟,由质量比和与轨道平面正交的各个旋转部件进行跨越。特别注意结合极值比率限制和亚域名不均衡效应。作为该方法的说明,我们提供了两个应用,以最终的旋转和最终质量(或等效:辐射能量)的残余黑洞。拟合427个数字相对论模拟,我们获得了与先前公布的适合符合的结果,而是在极端准确性上提高,特别是在极值限制的方法和不平等 - 自旋配置中。我们还讨论了数据质量研究的重要性,当与各种资源相结合时,如何进行详细的错误预算,以进一步改进这些已经高度准确的符合,以及对不等旋转效果的第一次详细研究有助于选择最具信息未来数值相关性的参数运行。

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  • 来源
    《Physical Review D》 |2017年第8期|064024.1-064024.27|共27页
  • 作者单位

    Universitat de les Illes Balears IAC3-IEEC 07122 Palma de Mallorca Spain;

    Universitat de les Illes Balears IAC3-IEEC 07122 Palma de Mallorca Spain School of Physics and Astronomy University of Glasgow Glasgow G12 8QQ United Kingdom;

    Universitat de les Illes Balears IAC3-IEEC 07122 Palma de Mallorca Spain;

    School of Physics and Astronomy Cardiff University The Parade Cardiff CF24 3AA United Kingdom;

    School of Physics and Astronomy Cardiff University The Parade Cardiff CF24 3AA United Kingdom;

    School of Physics and Astronomy Cardiff University The Parade Cardiff CF24 3AA United Kingdom Albert-Einstein-Institut Am Muehlenberg 1 D-14476 Potsdam-Golm Germany;

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