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首页> 外文期刊>Classical and Quantum Gravity: An Interantional Journal of Gravity Geometry of Field Theories Supergravity Cosmology >Time-domain inspiral templates for spinning compact binaries in quasi-circular orbits described by their orbital angular momenta
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Time-domain inspiral templates for spinning compact binaries in quasi-circular orbits described by their orbital angular momenta

机译:时域启发式模板,用于在准圆形轨道上以其轨道角动量描述紧凑的双星

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摘要

We present a prescription to compute the time-domain gravitational wave (GW) polarization states associated with spinning compact binaries inspiraling along quasi-circular orbits. We invoke the orbital angular momentum L rather than its Newtonian counterpart L_N to describe the binary orbits while the two spin vectors are freely specified in an inertial frame associated with the initial direction of the total angular momentum.We show that the use of L to describe the orbits leads to additional 1.5PN order amplitude contributions to the two GW polarization states compared to the L_N-based approach and discuss few implications of our approach. Furthermore, we provide a plausible prescription for GW phasing based on certain theoretical considerations and which may be treated as the natural circular limit to GW phasing for spinning compact binaries in inspiraling eccentric orbits (Gopakumar A and Sch?fer G 2011 Phys. Rev. D 84 124007).
机译:我们提出了一个处方,以计算与沿准圆形轨道鼓舞的自旋紧密二进制相关的时域重力波(GW)极化状态。我们调用轨道角动量L而不是牛顿对应的L_N来描述二元轨道,而两个自旋矢量是在与总角动量的初始方向相关的惯性框架中自由指定的。我们证明了使用L来描述与基于L_N的方法相比,该轨道对两个GW极化状态产生了额外的1.5 PN阶振幅贡献,并且讨论了我们方法的一些含义。此外,我们基于某些理论上的考虑为GW相位提供了一个合理的处方,并且可以将其视为对在偏心轨道上旋转的紧凑型二元旋转GW相位的自然循环限制(Gopakumar A和Sch?fer G 2011 Phys。Rev. D)。 84 124007)。

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