Field sources in a Lorentz symmetry breaking scenario with a single background vector
arXiv:1403.5953 · doi:10.1140/epjc/s10052-014-2937-9
Abstract
This paper is devoted to investigating the interactions between stationary sources of the electromagnetic field, in a model which exhibits explicit Lorentz-symmetry breaking due to the presence of a single background vector. We focus on physical phenomena that emerge from this kind of breaking and which have no counterpart in Maxwell Electrodynamics.
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- New point-like sources and a conducting surface in Maxwell-Chern-Simons electrodynamics
- External sources in a minimal and nonminimal CPT-odd Lorentz violating Maxwell electrodynamics
- Magnetoelectric boundary simulated by a Chern-Simons-like model
- Higher order derivatives extension of Maxwell-Chern-Simons electrodynamics in the presence of field sources and material boundaries
- Field sources in a CPT-even Lorentz-violation Maxwell electrodynamics
- Material boundaries in Carroll-Field-Jackiw Lorentz-violating electrodynamics
- The point-charge self-energy in a nonminimal Lorentz violating Maxwell Electrodynamics
- Features of planar Lee-Wick electrodynamics
- Semi-transparent boundaries in CPT-even Lorentz violating electrodynamics
- Unimodular gravity theory with external sources in a Lorentz-symmetry breaking scenario