论文标题
从偏心极端质量比率灵感的引力波作为标量场的探针
Gravitational waves from eccentric extreme mass-ratio inspirals as probes of scalar fields
论文作者
论文摘要
我们研究了带有其他标量场的修饰的重力理论中极端质量比系统(EMRI)的Schwarzschild时空的怪异轨道。由于标量场带走了额外的能量和角动量,因此在修饰的重力衰减中EMRI的轨道比一般相对性衰减的速度快。到达最低最小值的偏心$ e $所需的时间较小,而转折点的半拉托直肠$ p $和$ e $的值是$ e $达到的最低限度的最小值,对于较大的标量充电$ d $。除了使用数值方法计算能量通量外,我们还使用了纽顿后的牛顿后膨胀率在偏心轨道中带走的能量速率,以了解能量发射的行为。通过将标量通量添加到黑洞扰动工具包的开放代码fastemriwaveforms,我们从数值上生成具有标量字段的偏心emris的快速引力波形,并在带有和不带有标量的标量电荷的波形之间使用忠诚度,以讨论标量电荷的检测。标量电荷的检测误差也通过Fisher信息矩阵的方法估算。
We study eccentric orbits of the Schwarzschild spacetime for extreme mass ratio system (EMRI) in modified gravity theories with additional scalar fields. Due to the additional energy and angular momentum carried away by the scalar field, the orbit of the EMRI in modified gravity decays faster than that in general relativity. The time that it takes the eccentricity $e$ to reach the minimum is smaller and the values of the semi-latus rectum $p$ and $e$ at the turning point when $e$ reaches the minimum are bigger for larger scalar charge $d$. In addition to the calculation of energy fluxes with numerical method, we also use the Post-Newtonian expansion of the rate of energy carried away by the scalar field in eccentric orbits to understand the behaviors of the energy emission. By adding the scalar flux to the open code FastEMRIWaveforms of the Black Hole Perturbation Toolkit, we numerically generate fast gravitational waveforms for eccentric EMRIs with scalar fields and use the faithfulness between waveforms with and without the scalar charge to discuss the detection of scalar charge $d$. The detection error of the scalar charge is also estimated with method of Fisher information matrix.