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Dynamics of Electromagnetic Fields and Structure of Regular Rotating Electrically Charged Black Holes and Solitons in Nonlinear Electrodynamics Minimally Coupled to Gravity

机译:最小耦合重力的非线性电动力学中正则旋转带电黑洞和孤立子的电磁场动力学和结构

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We study the dynamics of electromagnetic fields of regular rotating electrically charged black holes and solitons replacing naked singularities in nonlinear electrodynamics minimally coupled to gravity (NED-GR). They are related by electromagnetic and gravitational interactions and described by the axially symmetric NED-GR solutions asymptotically Kerr-Newman for a distant observer. Geometry is described by the metrics of the Kerr-Schild class specified by T t t = T r r ( p r = ? ρ ) in the co-rotating frame. All regular axially symmetric solutions obtained from spherical solutions with the Newman-Janis algorithm belong to this class. The basic generic feature of all regular objects of this class, both electrically charged and electrically neutral, is the existence of two kinds of de Sitter vacuum interiors. We analyze the regular solutions to dynamical equations for electromagnetic fields and show which kind of a regular interior is favored by electromagnetic dynamics for NED-GR objects.
机译:我们研究了规则旋转的带电黑洞和孤子的电磁场动力学,这些电磁场替代了与引力(NED-GR)最小耦合的非线性电动力学中的裸奇点。它们通过电磁和引力相互作用相关联,并由远距离观察者的轴向对称NED-GR解渐近地描述为Kerr-Newman。几何形状由在同向旋转框架中由T t t = T r r(p r =?ρ)指定的Kerr-Schild类的度量来描述。使用Newman-Janis算法从球面解获得的所有规则轴对称解都属于此类。该类所有常规物体(带电和电中性)的基本通用特征是存在两种de Sitter真空内饰。我们分析了电磁场动力学方程的正则解,并显示了NED-GR对象的电磁动力学偏爱哪种规则内部。

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