论文标题

Kerr以外的黑洞的计算光谱变化方法

An approach to computing spectral shifts for black holes beyond Kerr

论文作者

Hussain, Asad, Zimmerman, Aaron

论文摘要

在二进制黑洞合并后,重力波响的最新测量在不久的将来增加了精密黑洞光谱的前景。为了使用RINDDown测量对黑洞的性质进行最敏感的测试,计算到黑洞范围的偏差特别是相对论的扩展至关重要。还需要这些频谱转移来解释对相对论的预测的任何违规,这些预测可能会在响声过程中检测到。在这里,我们提出了计算带有任意旋转Kerr黑洞频谱的转移的第一步,它通过得出一个修改后的Teukolsky方程,该方程控制了GR之外的理论中黑洞的扰动。我们的方法适用于一类理论,包括动态的Chern-simons重力和换档对称标量高斯重力,如果相对性偏差很小。这允许采用扰动方法来求解运动方程。此外,我们展示了如何使用特征值扰动方法使用修改后的方程来计算Kerr黑洞的前阶光谱移动。我们的形式主义提供了一种实用的方法,可以预测一系列有希望的相对论的黑洞的响声,从而使未来的精确搜索在黑洞响起中进行签名。

Recent measurements of gravitational-wave ringdown following the merger of binary black holes raise the prospect of precision black hole spectroscopy in the near future. To perform the most sensitive tests of the nature of black holes using ringdown measurements, it is critical to compute the deviations to the spectrum of black holes in particular extensions of relativity. These spectral shifts are also needed to interpret any violations of the predictions of relativity that may be detected during ringdown. Here we present a first step towards computing the shifts to the spectrum of Kerr black holes with arbitrary spins, by deriving a modified Teukolsky equation governing the perturbations of black holes in theories beyond GR. Our approach applies to a class of theories which includes dynamical Chern-Simons gravity and shift-symmetric scalar Gauss-Bonnet gravity, in the case where the deviations from relativity are small. This allows for a perturbative approach to solving the equations of motion. Further, we show how to use the modified equation to compute the leading-order spectral shifts of Kerr black holes, using eigenvalue perturbation methods. Our formalism provides a practical approach to predicting ringdown for black holes in a range of promising extensions to relativity, enabling future precision searches for their signatures in black hole ringdown.

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