论文标题

用于精确分析波形和磁通磁体的新途径

New Avenue for Accurate Analytical Waveforms and Fluxes for Eccentric Compact Binaries

论文作者

Albanesi, Simone, Placidi, Andrea, Nagar, Alessandro, Orselli, Marta, Bernuzzi, Sebastiano

论文摘要

我们引入了一种新的范式,用于构建用于偏心紧凑型二进制的准确分析波形(和通量)。我们的配方建立在标准的牛顿(PN)方法的基础上,但(i)保留了非圆形波形瞬时部分的相位空间变量的隐式时间衍生,然后(ii)使用有效的单体(EOB)程序适当地分解和恢复该部分PN-IMPLITICT specim form。我们通过用绕kerr黑洞的测试量源求解Teukolsky方程获得的确切结果测试我们的处方,并比较时间导数计算的精确运动与PN运动方程的使用。仅关注四极杆的贡献,我们发现精确运动方程的使用产生了(平均)角动量通量的分析/数值一致性,相对于先前的工作,它的提高了40美元\%$ $ $ $ 4.5 \%$ $ $ $ $ $ $ a,用于$ 4.9 $ e = 0.9 $ e = 0.9 $ e = 0.9 $和黑洞$-0。 +0.9 $。我们还发现牛顿,1PN和2PN结果之间存在显着的收敛趋势。我们的方法使用重新召集的EOB运动方程来延续到可比的质量案例,并为基于忠实的EOB波形模型铺平了道路,用于为当前和未来的引力波检测器提供长期振奋的偏心二进制物。

We introduce a new paradigm for constructing accurate analytic waveforms (and fluxes) for eccentric compact binaries. Our recipe builds on the standard Post-Newtonian (PN) approach but (i) retains implicit time-derivatives of the phase space variables in the instantaneous part of the noncircular waveform, and then (ii) suitably factorizes and resums this partly PN-implicit waveform using effective-one-body (EOB) procedures. We test our prescription against the exact results obtained by solving the Teukolsky equation with a test-mass source orbiting a Kerr black hole, and compare the use of the exact vs PN equations of motion for the time derivatives computation. Focusing only on the quadrupole contribution, we find that the use of the exact equations of motion yields an analytical/numerical agreement of the (averaged) angular momentum fluxes that is improved by $40\%$ with respect to previous work, with $4.5\%$ fractional difference for eccentricity $e=0.9$ and black hole dimensionless spin $-0.9\leq \hat{a}\leq +0.9$. We also find a remarkable convergence trend between Newtonian, 1PN and 2PN results. Our approach carries over to the comparable mass case using the resummed EOB equations of motion and paves the way to faithful EOB-based waveform model for long-inspiral eccentric binaries for current and future gravitational wave detectors.

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