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Higher order corrections to deflection angle of massive particles and light rays in plasma media for stationary spacetimes using the Gauss-Bonnet theorem

机译:使用高斯通道定理的静止空间晶体介质中大规模粒子和光线的偏转角度更高的校正

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摘要

The purpose of this article is twofold. First, we extend the results presented in [G. Crisnejo and E. Gallo, Phys. Rev. D 97, 124016 (2018)] to stationary spacetimes. Specifically, we show that the Gauss-Bonnet theorem can be applied to describe the deflection angle of light rays in plasma media in stationary spacetimes. Second, by using a correspondence between the motion of light rays in a cold nonmagnetized plasma and relativistic test massive particles we show that this technique is not only powerful to obtain the leading order behavior of the deflection angle of massive/massless particles in the weak field regime but also to obtain higher order corrections. We particularize it to a Kerr background where we compute the deflection angle for test massive particles and light rays propagating in a nonhomogeneous cold plasma by including third order corrections in the mass and spin parameters of the black hole.
机译:本文的目的是双重的。 首先,我们扩展了[G.的结果 Cassnejo和E. Gallo,Phys。 Rev. D 97,124016(2018)]到静止的空间。 具体地,我们表明,可以应用高斯 - 发动机罩定理,以描述静止的空间中等离子体介质中的光线的偏转角。 其次,通过在冷的非磁性等离子体中的光线运动之间的对应关系和相对论的测试大规模颗粒之间,我们表明该技术不仅能够获得弱场中大型/无麻颗粒的偏转角的前导顺序行为 制度,但也获得更高的秩序校正。 我们将其统治到Kerr背景,其中通过包括黑洞的质量和旋转参数中的第三阶校正,从而计算在非均匀冷等离子体中传播的测试大规模粒子和光线的偏转角。

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