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From polarized gravitational waves to analytically solvable electromagnetic beams

机译:从偏振重力波到分析可溶性电磁束

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摘要

Using the correspondence between solutions of gravitational and gauge theories (the so-called classical double copy conjecture) some electromagnetic fields with vortices are constructed, for which the Lorentz force equations are analytically solvable. The starting point is a certain class of plane gravitational waves exhibiting the conformal symmetry. The notion of the Niederer transformation, crucial for the solvability, is analyzed in the case of the Lorentz force equation on the curved spacetimes as well as its derivation by means of integrals of motion (associated with conformal generators preserving these vortices) is presented. Furthermore, some models discussed recently in the context of the intense laser beams are constructed from their gravitational counterparts, with the special emphasis put on the focusing property, and new solvable examples are presented.
机译:使用重力和仪表理论的解决方案之间的对应关系(所谓的经典双复制猜测)构造了一种具有涡流的一些电磁场,因此洛伦兹力方程在分析可溶解。 起始点是表现出共形对称性的一定等级的平面重力波。 在弯曲的空间上的洛伦兹力方程的情况下,分析了Niederer转化的概念,对可动化性的关键是呈现弯曲的空间等的情况以及通过运动的积分(与保留这些涡流的保形发电机相关联)的衍生。 此外,最近在激烈激光束的上下文中讨论的一些模型由其引力对应物构成,特别强调放置在聚焦性质上,并提出了新的可解决例。

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