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首页> 外文期刊>International Journal of Modern Physics: Conference Series >Regular rotating electrically charged structures in nonlinear electrodynamics minimally coupled to gravity
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Regular rotating electrically charged structures in nonlinear electrodynamics minimally coupled to gravity

机译:非线性电动力学中与重力最小耦合的规则旋转带电结构

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In nonlinear electrodynamics minimally coupled to gravity, regular spherically symmetric electrically charged solutions satisfy the weak energy condition and have obligatory de Sitter center. By the Gürses-Gürsey algorithm they are transformed to regular axially symmetric solutions asymptotically Kerr-Newman for a distant observer. Rotation transforms de Sitter center into de Sitter equatorial disk embedded as a bridge into a de Sitter vacuum surface. The de Sitter surfaces satisfy p = ? ρ and have properties of a perfect conductor and ideal diamagnetic. The Kerr ring singularity is replaced with the superconducting current which serves as a non-dissipative electromagnetic source of the asymptotically Kerr-Newman geometry. Violation of the weak energy condition is prevented by the basic requirement of electrodynamics of continued media.
机译:在最小限度地与重力耦合的非线性电动力学中,规则的球形对称带电解满足弱能条件并具有必不可少的de Sitter中心。通过Gürses-Gürsey算法,它们为远距离观察者渐近地转换为正则的轴对称解Kerr-Newman。旋转将de Sitter中心转换成de Sitter赤道盘,并以桥的形式嵌入de Sitter真空表面。 de Sitter表面满足p =? ρ并具有理想导体和理想抗磁性的特性。用超导电流代替了Kerr环的奇异性,该电流用作渐近Kerr-Newman几何结构的非耗散电磁源。连续介质电动力学的基本要求可以防止违反弱能条件。

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