论文标题
用kerr黑洞以极高的质量比灵感来检测标量场
Detection of scalar fields by Extreme Mass Ratio Inspirals with a Kerr black hole
论文作者
论文摘要
我们研究发生在修饰的重力中的极端质量比率,为此,该系统是由一个小的紧凑型物体建模的,标量电荷螺旋螺旋形成一个超级质量的Kerr黑洞。除了由度量扰动引起的张力引力波外,标量场还诱导了辐射。相关的度量和标量扰动是由小物体的轨道运动触发的,这会导致绝热近似下的不均匀微分方程系统。然后,使用相应均匀方程的解决方案提供的绿色功能来求解这种方程系统。为了从观察的角度探索当前方案,我们研究了相关的可观察物如何取决于特定的时空配置。在这方面,评估了中央超级黑洞的标量电荷,质量比和自旋的功能,评估了在过程中积累的能量通量和引力波。特别是,存在额外的标量发射会导致总体能量损失的更高速度,从而减少小物体陷入中央黑洞之前的轨道循环总数。此外,对于一个具有较高自旋的中央黑洞,发现产生的重力辐射上标量电荷的烙印更为重要,这表明检测标量电荷的可能性。
We study extreme mass ratio inspirals occurring in modified gravity, for which the system is modeled by a small compact object with scalar charge spiraling into a supermassive Kerr black hole. Besides the tensorial gravitational waves arising from the metric perturbations, radiations are also induced by the scalar field. The relevant metric and scalar perturbations are triggered by the orbital motion of the small object, which give rise to a system of inhomogeneous differential equations under the adiabatic approximation. Such a system of equations is then solved numerically using Green's function furnished by the solutions of the corresponding homogeneous equations. To explore the present scenario from an observational perspective, we investigate how the pertinent observables are dependent on specific spacetime configurations. In this regard, the energy fluxes and the gravitational wave dephasing accumulated during the process are evaluated, as functions of the scalar charge, mass ratio, and spin of the central supermassive black hole. In particular, the presence of additional scalar emission leads to a more significant rate of overall energy loss, which, in turn, decreases the total number of orbital cycles before the small object plunges into the central black hole. Moreover, for a central black hole with a higher spin, the imprints of the scalar charge on the resultant gravitational radiations are found to be more significant, which indicates the possibility of detecting the scalar charge.