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Maxwell-Chern-Simons vortices in a CPT-odd Lorentz-violating Higgs Electrodynamics
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abstract
We have studied BPS vortices in a CPT-odd and Lorentz-violating Maxwell-Chern-Simons-Higgs (MCSH) electrodynamics attained from the dimensional reduction of the Carroll-Field-Jackiw-Higgs model. The Lorentz-violating parameter induces a pronounced behavior at origin (for the magnetic/electric fields and energy density) which is absent in the MCSH vortices. For some combination of the Lorentz-violating coefficients there always exist a sufficiently large winding number $n_{0}$ such that for all $% |n|\geq |n_{0}|$ the magnetic field flips its signal, yielding two well defined regions with opposite magnetic flux. However, the total magnetic flux remains quantized and proportional to the winding number.
Forward citations
Cited by 2 Pith papers
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One-loop contributions in Lorentz-violating scalar QED with nonminimal coupling
One-loop calculation in LV scalar QED with nonminimal coupling shows photon two-point function remains transverse due to diagram cancellations, preserving gauge invariance.
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Geometric optics analysis in Lorentz violating Chern-Simons electrodynamics
Geometric optics in the Maxwell-Carroll-Field-Jackiw theory gives a polarization rotation proportional to the integrated background vector, with the standard intensity transport equation unchanged.
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