Radiative contribution to classical gravitational scattering at the third order in G

T. Damour
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引用次数: 103

Abstract

Working within the post-Minkowskian approach to General Relativity, we prove that the radiation-reaction to the emission of gravitational waves during the large-impact-parameter scattering of two (classical) point masses modifies the conservative scattering angle by an additional contribution of order $G^3$ which involves a high-energy (or massless) logarithmic divergence of opposite sign to the one contained in the third-post-Minkowskian result of Bern et al. [Phys. Rev. Lett. {\bf 122}, 201603 (2019)]. The high-energy limit of the resulting radiation-reaction-corrected (classical) scattering angle is finite, and is found to agree with the one following from the (quantum) eikonal-phase result of Amati, Ciafaloni and Veneziano [ Nucl. Phys. B {\bf 347}, 550 (1990)].
辐射对三阶重力散射的贡献
在广义相对论的后闵可夫斯基方法中工作,我们证明了在两个(经典)点质量的大冲击参数散射期间引力波发射的辐射反应通过一个阶$G^3$的额外贡献修改了保守散射角,该贡献涉及与Bern等人的第三个后闵可夫斯基结果中包含的符号相反的高能(或无质量)对数散度。启。[\bf 122}, 201603(2019)]。所得到的辐射-反应校正(经典)散射角的高能极限是有限的,并且与Amati, Ciafaloni和Veneziano [Nucl]的(量子)eikonal-phase结果一致。理论物理。[j].地球物理学报,2004(5):391 - 391。
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