Space-Time Supersymmetry of Extended Fermionic Strings in $2 + 2$ Dimensions
Abstract
The fermionic string theory is revisited in light of its recently proposed equivalence to the non-compact fermionic string model. The issues of space-time Lorentz covariance and supersymmetry for the BRST quantized strings living in uncompactified dimensions are discussed. The equivalent local quantum supersymmetric field theory appears to be the most transparent way to represent the space-time symmetries of the extended fermionic strings and their interactions. Our considerations support the Siegel's ideas about the presence of Lorentz symmetry as well as at least one self-dual space-time supersymmetry in the theory of the fermionic strings, though we do not have a compelling reason to argue about the necessity of the {\it maximal} space-time supersymmetry. The world-sheet arguments about the absence of all string massive modes in the physical spectrum, and the vanishing of all string-loop amplitudes in the Polyakov approach, are given on the basis of general consistency of the theory.
Keywords
Cite
@article{arxiv.hep-th/9302091,
title = {Space-Time Supersymmetry of Extended Fermionic Strings in $2 + 2$ Dimensions},
author = {S. V. Ketov},
journal= {arXiv preprint arXiv:hep-th/9302091},
year = {2010}
}
Comments
29 pages, LaTeX, ITP-UH-1/93