六维平坦时空中的电动力学

Y. Yaremko
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引用次数: 0

摘要

我们考虑六维平坦时空中经典电荷的动力学。自由电荷的质量壳关系允许非线性振荡。分析了法拉第张量的特征值和特征向量问题,建立了6D电磁场的代数结构。我们详细阐述了基于三个域不变量的分类方案。利用电磁场张量的基本代数性质,分析了恒定电磁场中电荷的运动。它的世界线是双曲轨道和圆形轨道的组合,它们位于三个相互正交的二维薄片上。在膜世界场景中,我们将理论投射到四维的德西特空间上。事实上,事实证明,基本粒子的自旋本身就是额外维度的表现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electrodynamics in flat spacetime of six dimensions
We consider the dynamics of a classical charge in flat spacetime of six dimensions. The mass shell relation of a free charge admits nonlinear oscillations. Having analyzed the problem of on eigenvalues and eigenvectors of Faraday tensor, we establish the algebraic structure of electromagnetic field in 6D. We elaborate the classification scheme based on three field's invariants. Using the basic algebraic properties of the electromagnetic field tensor we analyze the motion of a charge in constant electromagnetic field. Its world line is a combination of hyperbolic and circular orbits which lie in three mutually orthogonal sheets of two dimensions. Within the braneworld scenario, we project the theory on the de Sitter space of four dimensions. Actually, as it turns out, spins of elementary particles themselves are manifestations of extra dimensions.
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