Black hole scattering amplitudes via analytic small-frequency expansion and monodromy

Gleb Aminov, Paolo Arnaudo
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Abstract

We utilize three complementary approaches to pinpoint the exact form of scattering amplitudes in Schwarzschild spacetime. First, we solve the Regge-Wheeler equation perturbatively in the small-frequency regime. We use the obtained solutions to determine the monodromy in the near-spatial infinity region, which leads to a specific partial differential equation on the elements of the scattering matrix. As a result, it can be written in terms of the elements of the infinitesimal generator of the monodromy transformation and an integration constant. This constant is further related to the Nekrasov-Shatashvili free energy through the resummation of infinitely many instantons. The quasinormal mode frequencies are also studied in the small-frequency approximation.
通过解析小频扩展和单色性得出的黑洞散射振幅
我们利用三种互补的方法来精确定位施瓦兹柴尔德时空中散射振幅的确切形式。首先,我们在小频率范围内对雷格-韦勒方程进行扰动求解。我们利用所得到的解来确定近空间无穷远区域的单色性,从而得出关于散射矩阵元素的特定偏微分方程。因此,它可以用单色变换无穷小发生器的元素和一个积分常数来写。这个常数通过无限多个定子的累加与涅克拉索夫-沙塔什维利自由能进一步相关。在小频率近似中还研究了准正常模式频率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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