A Specific N = 2 Supersymmetric Quantum Mechanical Model: Supervariable Approach
arXiv:1509.04416 · doi:10.1155/2017/1403937
Abstract
By exploiting the supersymmetric invariant restrictions on the chiral and anti-chiral supervariables, we derive the off-shell nilpotent symmetry transformations for a specific (0 + 1)-dimensional N = 2 supersymmetric quantum mechanical model which is considered on a (1, 2)-dimensional supermanifold (parametrized by a bosonic variable t and a pair of Grassmannian variables (θ, \barθ). We also provide the geometrical meaning to the symmetry transformations. Finally, we show that this specific N = 2 SUSY quantum mechanical model is a model for Hodge theory.
LaTeX File, 13 Pages, Minor Modifications, Advances in High Energy Physics, 2017, 1403937 (2017)
References in corpus (9)
- Gauge Invariance in Field Theory and Statistical Physics in Operator Formalism
- An Alternative To The Horizontality Condition In Superfield Approach To BRST Symmetries
- A Generalization Of The Horizontality Condition In The Superfield Approach To Nilpotent Symmetries For QED With Complex Scalar Fields
- Novel discrete symmetries in the general N = 2 supersymmetric quantum mechanical model
- N = 2 SUSY symmetries for a moving charged particle under influence of a magnetic field: Supervariable approach
- General N = 2 Supersymmetric Quantum Mechanical Model: Supervariable Approach to its Off-Shell Nilpotent Symmetries
- Novel symmetries in N = 2 supersymmetric quantum mechanical models
- A Free N = 2 Supersymmetric System: Novel Symmetries
- Supervariable approach to nilpotent symmetries of a couple of N = 2 supersymmetric quantum mechanical models