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The point-charge self-energy in a nonminimal Lorentz-violating Maxwell electrodynamics

Author(s): Borges, L. H.C. [UNESP] ; Barone, F. A. ; Ferrari, A. F.

Date: 2018

Persistent ID: http://hdl.handle.net/11449/176580

Origin: Oasisbr


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Made available in DSpace on 2018-12-11T17:21:35Z (GMT). No. of bitstreams: 0 Previous issue date: 2018-05-01

In this letter we study the self-energy of a point-like charge for the electromagnetic field in a non-minimal Lorentz symmetry breaking scenario in a (n + 1)-dimensional space time. We consider two variations of a model where the Lorentz violation is caused by a background vector dν that appears in a higher derivative interaction. We restrict our attention to the case where dμ is a time-like background vector, namely d2 = dμdμ > 0, and we verify that the classical self-energy is finite for any odd spatial dimension n and diverges for even n. We also make some comments regarding obstacles in the quantization of the proposed model.

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Document Type Journal article
Language English
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