New N=2 Supersymmetric Vector-Tensor Interaction
arXiv:hep-th/0005044 · doi:10.1016/S0370-2693(00)00768-1
Abstract
An N=2 supersymmetric self-interaction of the vector-tensor multiplet is presented, in which the vector provides the gauge field for local central charge transformations. The dual description in terms of a vector multiplet and an N=1 superspace formulation are given.
7 pages, LaTeX2e with amsmath.sty. Minor improvements in the text, references added
References in corpus (8)
- All consistent interactions for exterior form gauge fields
- N=2 Rigid Supersymmetry with Gauged Central Charge
- N=2 Supergravity Lagrangians with Vector-Tensor Multiplets
- Chern-Simons Couplings and Inequivalent Vector-Tensor Multiplets
- Consistent and covariant anomalies in six-dimensional supergravity
- On non-linear superfield versions of the vector-tensor multiplet
- D=4, N=1 Supersymmetric Henneaux-Knaepen Models
- The Linear Vector-Tensor Multiplet with Gauged Central Charge
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- Superform formulation for vector-tensor multiplets in conformal supergravity
- Vector-tensor supermultiplets in AdS and supergravity
- Nonlinear Vector-Tensor Multiplets Revisited
- Variant vector-tensor multiplets in supergravity: Classification and component reduction
- Hidden symmetries of supersymmetric p-form gauge theories