English

Space-Time Supersymmetry of Extended Fermionic Strings in $2 + 2$ Dimensions

High Energy Physics - Theory 2010-04-06 v1

Abstract

The N=2N=2 fermionic string theory is revisited in light of its recently proposed equivalence to the non-compact N=4N=4 fermionic string model. The issues of space-time Lorentz covariance and supersymmetry for the BRST quantized N=2N=2 strings living in uncompactified 2+22 + 2 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 SO(2,2)SO(2,2) Lorentz symmetry as well as at least one self-dual space-time supersymmetry in the theory of the N=2(4)N=2(4) 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

R2 v1 2026-07-22T15:45:08.695Z