On the linearization of nonlinear supersymmetry based on the commutator algebra
arXiv:1609.01081 · doi:10.1016/j.physletb.2016.11.051
Abstract
We discuss a linearization procedure of nonlinear supersymmetry (NLSUSY) based on the closure of the commutator algebra for variations of functionals of Nambu-Goldstone fermions and their derivative terms under NLSUSY transformations in Volkov-Akulov NLSUSY theory. In the case of a set of bosonic and fermionic functionals, which leads to (massless) vector linear supermultiplets, we explicitly show that general linear SUSY transformations of basic components defined from those functionals are uniquely determined by examining the commutation relation in the NLSUSY theory.
13 pages; references and discussions added
References in corpus (5)
- On Wess-Zumino gauge
- Linear space of spinor monomials and realization of the Nambu-Goldstone fermion in the Volkov-Akulov and Komargodski-Seiberg Lagrangians
- Systematics of linearization of N = 2 nonlinear SUSY in superfield formulation
- On the role of the commutator algebra for nonlinear supersymmetry
- Commutator-based linearization of nonlinear supersymmetry