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Gravitational waveforms for high spin and high mass-ratio binary black holes: A synergistic use of numerical-relativity codes

机译:高旋转和高质量比二元黑洞的引力波形:协同使用数值相对性码

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摘要

Observation and characterization of gravitational waves from binary black holes requires accurate knowledge of the expected waveforms. The late inspiral and merger phase of the waveform is obtained through direct numerical integration of the full 3-dimensional Einstein equations. The Spectral Einstein Code (SpEC) utilizes a multi-domain pseudo-spectral method tightly adapted to the geometry of the black holes; it is computationally efficient and accurate, but—for high mass-ratios and large spins—sometimes requires manual fine-tuning for the merger-phase of binaries. The Einstein Toolkit (ET) employs finite difference methods and the moving puncture technique; it is less computationally efficient, but highly robust. For some mergers with high mass ratio and large spins, the efficient numerical algorithms used in SpEC have failed, whereas the simpler algorithms used in the ET were successful. Given the urgent need of testing the accuracy of waveform models currently used in LIGO and Virgo inference analyses for high mass ratios and spins, we present here a synergistic approach to numerical-relativity: We combine SpEC and ET waveforms into complete inspiral-merger-ringdown waveforms, taking advantage of the computational efficiency of the pseudo-spectral code during the inspiral, and the robustness of the finite-difference code at the merger. We validate our method against a case where complete waveforms from both codes are available, compute three new hybrid numerical-relativity waveforms, and compare them with analytical waveform models currently used in LIGO and Virgo science. All the waveforms and the hybridization code are publicly available.
机译:来自二进制黑洞的引力波的观察和表征需要准确地了解预期波形。通过全3维爱因斯坦方程的直接数值集成来获得波形的后期升级和合并阶段。光谱爱因斯坦代码(规格)利用多域伪光谱方法紧密地适应黑洞的几何形状;它是计算上高效且准确的,但是对于高质量比和大旋转 - 有时需要手动微调二进制文件的兼并阶段。爱因斯坦工具包(ET)采用有限差分方式和移动穿刺技术;它的计算效率较低,但非常强大。对于具有高质量比和大旋转的一些合并,规范中使用的有效数值算法失败,而ET中使用的更简单算法成功。鉴于测试Ligo和Virgo推理分析的迫切需要测试目前用于高质量比和旋转的Virgo和Virgo推理分析,我们在此提出了一种协同的数字相对性的方法:我们将规格和et波形与完全的Inspiral-merger-ringdows结合起来波形,利用在伪光谱期间的伪光谱码的计算效率,并在合并中的有限差分代码的鲁棒性。我们验证了我们的方法,反对来自两个代码的完整波形的情况,计算三个新的混合数字相对性波形,并将它们与目前用于利极和处女科学中使用的分析波形模型进行比较。所有波形和杂交代码都公开可用。

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  • 来源
    《Physical review, D》 |2019年第1期|共7页
  • 作者单位

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

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

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

    Max Planck Institute for Gravitational Physics (Albert Einstein Institute) Am Mühlenberg 1 Potsdam 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

    Gravitational; waveforms; codes;

    机译:引力;波形;代码;

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