Lorentz-symmetry violating physics in a supersymmetric scenario in -D
arXiv:1912.00523 · doi:10.1209/0295-5075/129/11005
Abstract
We study the dimensional reduction for a -dimensional Lorentz Violating Lagrangian in the matter and gauge sectors in a Supersymmetric scenario. We thus obtain an effective model for photons induced by the effects of supersymmetry in our framework with Lorentz-symmetry violating. This model is discussed in connection with the attainment of a static potential between charged particles. Our calculation is done within the framework of the gauge-invariant, but path-dependent variable formalism. We thus find that the interaction energy displays a screening part, encoded by Bessel functions, and a linear confining potential.
7 pages
References in corpus (8)
- Signals for Lorentz Violation in Post-Newtonian Gravity
- Prospects for Large Relativity Violations in Matter-Gravity Couplings
- On the superfield supersymmetric aether-like Lorentz-breaking models
- Lorentz violation and black-hole thermodynamics
- Generation of geometrical phases and persistent spin currents in 1-dimensional rings by Lorentz-violating terms
- Vector Superfields and Lorentz Violation
- Three-dimensional Lorentz-violating action
- Photon and photino as Nambu-Goldstone zero modes in an emergent SUSY QED