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Self-Interacting Electromagnetic Fields and a Classical Discussion on the Stability of the Electric Charge
Authors:S.?O.?Vellozo  J.?A.?Helay?l Neto  A.?W.?Smith  L.?P.?G.?De?Assis
Affiliation:(1) Centro Tecnologico do Exército–CTEx, Av. das Americas 28705, 230020-470 Rio de Janeiro, RJ, Brasil;(2) Centro Brasileiro de Pesquisas Físicas–CBPF, Rua Dr. Xavier Sigaud 150, 22290-180 Rio de Janeiro, RJ, Brasil;(3) Grupo de Física Teórica José Leite Lopes, P.O. Box 91933, 25685-970 Petrópolis, RJ, Brasil;(4) Departamento de Física, Universidade Federal Rural do Rio de Janeiro, BR 465-07, 23851-180 Seropédica, RJ, Brasil
Abstract: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.
Keywords:Born-Infeld  Nonlinear electrodynamics  Magnetic dipole  Exact form solution  Charge stability
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