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Validating the effective-one-body model of spinning, precessing binary black holes against numerical relativity

机译:验证旋转的有效单体模型,对数值相对性进行抗旋转二进制黑洞

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摘要

In Abbott et al. [Phys. Rev. X 6, 041014 (2016)], the properties of the first gravitational wave detected by LIGO, GW150914, were measured by employing an effective-one-body (EOB) model of precessing binary black holes whose underlying dynamics and waveforms were calibrated to numerical-relativity (NR) simulations. Here, we perform the first extensive comparison of such an EOBNR model to 70 precessing NR waveforms that span mass ratios from 1 to 5, dimensionless spin magnitudes up to 0.5, generic spin orientations, and length of about 20 orbits. We work in the observer's inertial frame and include all e = 2 modes in the gravitational-wave polarizations. We introduce new prescriptions for the EOB ringdown signal concerning its spectrum and time of onset. For total masses between 10M_⊙ and 200M_⊙, we find that precessing EOBNR waveforms have unfaithfulness within about 3% to NR waveforms when considering the Advanced-LIGO design noise curve. This result is obtained without recalibration of the inspiral-plunge signal of the underlying nonprecessing EOBNR model. The unfaithfulness is computed with maximization over time and phase of arrival, sky location, and polarization of the EOBNR waveform, and it is averaged over sky location and polarization of the NR signal.We also present comparisons between NR and EOBNR waveforms in a frame that tracks the orbital precession.
机译:在Abbott等人。 [物理。启X 6,041014(2016)],由LIGO,GW150914检测的第一引力波的特性,进行了通过采用旋进双黑洞其基础动力学和波形的有效酮本体(EOB)模型进行校准测量到数值相对论(NR)的模拟。在这里,我们从1执行这样的EOBNR模型在70旋进NR第一广泛的比较波形跨度质量比为5,无量纲自旋幅度高达0.5,通用自旋取向,以及约20的轨道长度。我们在观察者的惯性系工作,包括在引力波极化所有E = 2点的模式。我们介绍了关于其光谱和发病时间的EOB振铃信号新处方。对于10M_⊙和200M_⊙之间的总质量,我们发现,旋进EOBNR波形考虑超前LIGO设计噪声曲线时,具有在约3%至NR波形不忠。无底层nonprecessing EOBNR模型的inspiral-伸出信号的重新校准获得该结果。的不忠实计算与最大化随时间和到达相位,天空位置和EOBNR波形的偏振,并且它是在一个帧中NR和EOBNR波形之间也存在比较平均超过天空位置和NR signal.We的偏振跟踪轨道进动。

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  • 来源
    《Physical review, D》 |2017年第1期|共18页
  • 作者单位

    Max Planck Institute for Gravitational Physics (Albert Einstein Institute) Am Mühlenberg 1 Potsdam-Golm 14476 Germany;

    Max Planck Institute for Gravitational Physics (Albert Einstein Institute) Am Mühlenberg 1 Potsdam-Golm 14476 Germany;

    Max Planck Institute for Gravitational Physics (Albert Einstein Institute) Am Mühlenberg 1 Potsdam-Golm 14476 Germany;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 粒子物理学;场论;
  • 关键词

    Validating; effective-one-body; model;

    机译:验证;有效一体;模型;

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