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      Self-interaction in the Bopp-Podolsky electrodynamics: Can the observable mass of a charged particle depend on its acceleration?

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          Abstract

          In this paper we obtain the expression for the self-force in the model with the Lagrangian containing additional terms, quadratic in Maxwell tensor derivatives (so-called Bopp-Podolsky electrodynamics). Features of this force are analyzed for various limiting cases. When a charged particle moves along straight line with a uniform acceleration, an explicit formula is found. In the framework of the considered model, an observable renormalized particle mass is shown to depend on its acceleration. This dependence allows, in principle, to extract experimentally a value of the particle bare mass.

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          Dirac-Born-Infeld actions and Tachyon Monopoles

          We investigate magnetic monopole solutions of the non-abelian DBI action describing 2 coincident non-BPS D9-branes in flat space. Just as in the case of kink and vortex solitonic tachyon solutions of the full DBI non-BPS actions, as previously analyzed by Sen, these monopole configurations are singular in the first instance and require regularization. We discuss a suitable non-abelian ansatz and show it solves the equations of motion to leading order in the regularization parameter. Fluctuations are studied and shown to describe a codimension 3 BPS D6-brane. A formula is derived for its tension. We comment on the implication to our results from both the trace (Tr) and symmetrized trace (Str) prescriptions of the non-abelian DBI action of coincident non-BPS D9-branes.
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            Author and article information

            Journal
            17 June 2013
            2013-12-16
            Article
            10.1016/j.aop.2013.12.005
            1306.3966
            f387e80e-5094-4303-8792-aac18c4847f6

            http://arxiv.org/licenses/nonexclusive-distrib/1.0/

            History
            Custom metadata
            Ann. Phys. 342, 11-20 (2014)
            8 pages, 1 figure, final version
            hep-th gr-qc physics.class-ph

            General relativity & Quantum cosmology,High energy & Particle physics,Classical mechanics

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