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Equivalence between supersymmetric self-dual and Maxwell-Chern-Simons models coupled to a matter spinor superfield
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We study the duality of the supersymmetric self-dual and Maxwell-Chern-Simons theories coupled to a fermionic matter superfield, using a master action. This approach evades the difficulties inherent to the quartic couplings that appear when matter is represented by a scalar superfield. The price is that the spinorial matter superfield represents a unusual supersymmetric multiplet, whose main physical properties we also discuss.
Forward citations
Cited by 2 Pith papers
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Dual equivalence between the Maxwell-Chern-Simons theory and two self-dual massive models interacting with matter in $\mathcal{N}=2$, $d=3$ superspace
The Maxwell-Chern-Simons theory and two massive self-dual models are shown to be dual in N=2, d=3 superspace, at both classical and generating-functional levels, including matter couplings.
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Nonlocal spinor superfield theory
A three-dimensional nonlocal spinor superfield model is proposed and its one-loop effective potential is computed in local and nonlocal limits.
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