论文标题

灵感带有通用变形的紧凑物体

Inspiralling compact objects with generic deformations

论文作者

Loutrel, Nicholas, Brito, Richard, Maselli, Andrea, Pani, Paolo

论文摘要

自我磨碎的身体可以具有任意复杂的形状,这意味着比一般相对性的黑洞更丰富的多极结构。有了这种动机,我们研究了由于通用的非对称质量四极矩矩为领先的牛顿后(PN)秩序而导致的二进制系统动力学的校正。 Utilizing the method of osculating orbits and a multiple scale analysis, we find analytic solutions to the precession and orbital dynamics of a (generically eccentric) binary in terms of the dimensionless modulus parameters $ε_{m}$, corresponding to axial $m=1$ and polar $m=2$ corrections from oblateness/prolateness.对于$ 0 \leε_{2} <1 $,对进动力的解决方案是精确的,并且在$ε_{1} \ ll 1 $中扰动。我们进一步计算了由于质量四极效应而导致准圆形二元的重力波振幅和相位的领先顺序校正。利用固定相近似和移动均匀的渐近学(SUA),以相对2PN顺序输入相位的校正,而振幅调制量则以-0.5pn顺序输入,并以SUA幅度校正为3.25pn顺序,相对2pn order,相对2pn order订单对领先顺序SUA校正。通过调查由于通用四极力矩而引起的脱粒,我们发现相位差$ \ gtrsim 0.1 $ 〜RADIANS可以实现$ε_{M} \ gtrsim 10^{ - 3} $,这表明可能与当前和未来的基于地面的坟墓检测器进行约束。我们的结果可以在参数估计研究中实现,以限制Kerr几何形状和中子星的一般多极变形。

Self-gravitating bodies can have an arbitrarily complex shape, which implies a much richer multipolar structure than that of a black hole in General Relativity. With this motivation, we study the corrections to the dynamics of a binary system due to generic, nonaxisymmetric mass quadrupole moments to leading post-Newtonian (PN) order. Utilizing the method of osculating orbits and a multiple scale analysis, we find analytic solutions to the precession and orbital dynamics of a (generically eccentric) binary in terms of the dimensionless modulus parameters $ε_{m}$, corresponding to axial $m=1$ and polar $m=2$ corrections from oblateness/prolateness. The solutions to the precession dynamics are exact for $0 \le ε_{2} < 1$, and perturbative in $ε_{1} \ll 1$. We further compute the leading order corrections to the gravitational wave amplitude and phase for a quasi-circular binary due to mass quadrupole effects. Making use of the stationary phase approximation and shifted uniform asymptotics (SUA), the corrections to the phase enter at relative 2PN order, while the amplitude modulations enter at -0.5PN order with a SUA amplitude correction at 3.25PN order, relative 2PN order to the leading order SUA correction. By investigating the dephasing due to generic quadrupole moments, we find that a phase difference $\gtrsim 0.1$~radians is achievable for $ε_{m} \gtrsim 10^{-3}$, which suggests that constraints with current and future ground-based gravitational wave detectors are possible. Our results can be implemented in parameter estimation studies to constrain generic multipolar deformations of the Kerr geometry and of neutron stars.

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