论文标题

自旋诱导的四极杆搜索的尺寸减小波形

Dimensionally Reduced Waveforms for Spin-Induced Quadrupole Searches

论文作者

Chia, Horng Sheng, Edwards, Thomas D. P., George, Richard N., Zimmerman, Aaron, Coogan, Adam, Freese, Katherine, Messick, Cody, Setzer, Christian N.

论文摘要

我们为二元灵感的二元灵感质量提供了高度准确的,尺寸降低的重力波形,其成分具有大型自旋诱导的四倍矩。人体的自旋诱导的四极杆首先出现在二元聚结的早期灵感阶段的波形阶段,使其成为人体内部结构的相对干净的探针。但是,对于具有较大四极偏离KERR的物体,使用二进制黑洞(BBH)模型的搜索将无效。为了执行计算上的搜索,我们提出了二维降低的模型,这些模型源自原始的六维后纽顿后波形,用于此类系统。我们的尺寸还原方法是由牛顿后扩展中的功率计数的指导,对源物理学的合适重新聚集和截断术语在阶段的截断项中,这些术语在最物理良好的参数参数空间区域中很小。此外,我们注意到,较大的四极偏差会导致二元系统达到其最小结合能的频率大大减少。这一最小信号标志着灵感策略的末端,并为PN波形提供了自然的截止。我们为这些频率截止提供了准确的分析估计。最后,我们进行注射研究以测试尺寸降低波形的有效性。我们发现,对于$ \ varepsilon> 0.999 $,超过$ 80 \%$的有效性高于标准BBH银行通常所需的$ 0.999 $。 \ Lessim 0.6 $和$κ_i\ Lessim 10^3 $的无量纲四极。重要的是,这些波形代表了实现有效搜索具有较大四倍体的天体物理对象的重要第一步。

We present highly accurate, dimensionally-reduced gravitational waveforms for binary inspirals whose components have large spin-induced quadrupole moments. The spin-induced quadrupole of a body first appears in the phase of a waveform at the early inspiral stage of the binary coalescence, making it a relatively clean probe of the internal structure of the body. However, for objects with large quadrupolar deviations from Kerr, searches using binary black hole (BBH) models would be ineffective. In order to perform a computationally-feasible search, we present two dimensionally-reduced models which are derived from the original six-dimensional post-Newtonian waveform for such systems. Our dimensional reduction method is guided by power counting in the post-Newtonian expansion, suitable reparameterizations of the source physics, and truncating terms in the phase that are small in most physically well-motivated regions of parameter space. In addition, we note that large quadrupolar deviations cause the frequency at which a binary system reaches its minimum binding energy to be reduced substantially. This minimum signals the end of the inspiral regime and provides a natural cutoff for the PN waveform. We provide accurate analytic estimates for these frequency cutoffs. Finally, we perform injection studies to test the effectualness of the dimensionally reduced waveforms. We find that over $80\%$ of the injections have an effectualness of $\varepsilon > 0.999$, significantly higher than is typically required for standard BBH banks, for systems with component spins of $|χ_i| \lesssim 0.6$ and dimensionless quadrupole of $κ_i \lesssim 10^3$. Importantly, these waveforms represent an essential first step towards enabling an effective search for astrophysical objects with large quadrupoles.

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