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11-orbit inspiral of a mass ratio 4:1 black-hole binary

机译:质量比为4:1的黑洞双星的11轨道吸气

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摘要

We analyse an 11-orbit inspiral of a non-spinning black-hole binary with mass ratio q ≡ M_1/M_2 = 4. The numerically obtained gravitational waveforms are compared with post-Newtonian (PN) predictions including several subdominant multipoles up to multipolar indices (l = 5, m = 5). We find that (i) numerical and post-Newtonian predictions of the phase of the (2, 2) mode accumulate a phase difference of about 0.35 rad at the PN cut-off frequency Mω = 0.1 for the Taylor T1 approximant when numerical and PN waveforms are matched over a window in the early inspiral phase; (ii) in contrast to previous studies of equal mass and specific spinning binaries, we find the Taylor T4 approximant to agree less well with numerical results, provided the latter are extrapolated to infinite extraction radius; (iii) extrapolation of gravitational waveforms to infinite extraction radius is particularly important for subdominant multipoles with l ≠ m; (iv) 3PN terms in post-Newtonian multipole expansions significantly improve the agreement with numerical predictions for subdominant multipoles.
机译:我们分析了质量比为q≡M_1 / M_2 = 4的非旋转黑洞双星的11轨道吸气。将数值获得的引力波形与牛顿后(PN)预测进行比较,其中包括几个主要的多极子,直至多极指数(l = 5,m = 5)。我们发现(i)(2,2)模式相位的数值和牛顿后预测在数值和PN时泰勒T1近似值的PN截止频率Mω= 0.1时累积了约0.35 rad的相位差。在吸气早期,在一个窗口上匹配波形; (ii)与以前对相同质量和特定纺丝二元的研究相反,我们发现泰勒T4近似值与数值结果的吻合度不太好,但前提是后者被外推至无限提取半径; (iii)将引力波形外推至无限提取半径对于l≠m的主要多极子尤为重要; (iv)后牛顿多极扩展中的3PN项大大改善了与主要多极的数值预测的一致性。

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