Continuous Spin Representations of the Poincar\'e and Super-Poincar\'e Groups
Abstract
We construct Wigner's continuous spin representations of the Poincar\'e algebra for massless particles in higher dimensions. The states are labeled both by the length of a space-like translation vector and the Dynkin indices of the {\it short little group} , where is the space-time dimension. Continuous spin representations are in one-to-one correspondence with representations of the short little group. We also demonstrate how combinations of the bosonic and fermionic representations form supermultiplets of the super-Poincar\'e algebra. If the light-cone translations are nilpotent, these representations become finite dimensional, but contain zero or negative norm states, and their supersymmetry algebra contains a central charge in four dimensions.
Cite
@article{arxiv.hep-th/0205145,
title = {Continuous Spin Representations of the Poincar\'e and Super-Poincar\'e Groups},
author = {Lars Brink and Abu M. Khan and Pierre Ramond and Xiaozhen Xiong},
journal= {arXiv preprint arXiv:hep-th/0205145},
year = {2009}
}
Comments
19 pages