From $\mathcal{N}{=}\,4$ Galilean superparticle to three-dimensional non-relativistic $\mathcal{N}{=}\,4$ superfields
Abstract
We consider the general Galilean superalgebra with arbitrary central charges and study its dynamical realizations. Using the nonlinear realization techniques, we introduce a class of actions for three-dimensional non-relativistic superparticle, such that they are linear in the central charge Maurer-Cartan one-forms. As a prerequisite to the quantization, we analyze the phase space constraints structure of our model for various choices of the central charges. The first class constraints generate gauge transformations, involving fermionic -gauge transformations. The quantization of the model gives rise to the collection of free , Galilean superfields, which can be further employed, e.g., for description of three-dimensional non-relativistic supersymmetric theories.
Keywords
Cite
@article{arxiv.1803.03159,
title = {From $\mathcal{N}{=}\,4$ Galilean superparticle to three-dimensional non-relativistic $\mathcal{N}{=}\,4$ superfields},
author = {Sergey Fedoruk and Evgeny Ivanov and Jerzy Lukierski},
journal= {arXiv preprint arXiv:1803.03159},
year = {2018}
}
Comments
1 + 39 pages; v2: minor corrections in few formulas and many language corrections without any impact on the results; one reference and two footnotes added