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Self-Interacting Electromagnetic Fields and a Classical Discussion on the Stability of the Electric Charge

机译:自相互作用电磁场和电荷稳定性的经典讨论

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The present work proposes a discussion on the self-energy of charged particles in the framework of nonlinear electrodynamics. We seek magnetically stable solutions generated by purely electric charges whose electric and magnetic fields are computed as solutions to the Born-Infeld equations. The approach yields rich internal structures that can be described in terms of the physical fields with explicit analytic solutions. This suggests that the anomalous field probably originates from a magnetic excitation in the vacuum due to the presence of the very intense electric field. In addition, the magnetic contribution has been found to exert a negative pressure on the charge. This, in turn, balances the electric repulsion, in such a way that the self-interaction of the field appears as a simple and natural classical mechanism that is able to account for the stability of the electron charge.
机译:本工作提出了在非线性电动力学框架内对带电粒子的自能量的讨论。我们寻求由纯电荷产生的磁稳定解,这些电荷的电场和磁场被计算为Born-Infeld方程的解。该方法产生了丰富的内部结构,可以使用显式解析解根据物理场进行描述。这表明由于非常强的电场的存在,反常场可能源自真空中的磁激发。另外,已经发现磁作用对电荷施加负压。这进而平衡了电排斥,使得场的自相互作用表现为一种简单且自然的经典机制,能够解释电子电荷的稳定性。

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