English

A New Approach to the Green-Schwarz Superstring

High Energy Physics - Theory 2007-05-23 v1

Abstract

By replacing two of the bosonic scalar superfields of the N=2 string with fermionic scalar superfields (which shifts dcriticald_{critical} from (2,2) to (9,1)), a quadratic action for the ten-dimensional Green-Schwarz superstring is obtained. Using the usual N=2 super-Virasoro ghosts, one can construct a BRST operator, picture-changing operators, and covariant vertex operators for the Green-Schwarz superstring. Superstring scattering amplitudes with an arbitrary number of loops and external massless states are then calculated by evaluating correlation functions of these vertex operators on N=2 super-Riemann surfaces, and integrating over the N=2 super-moduli. These multiloop superstring amplitudes have been proven to be SO(9,1) super-Poincar\'e invariant (by constructing the super-Poincar\'e generators and writing the amplitudes in manifest SO(9,1) notation), unitary (by showing agreement with amplitudes obtained using the light-cone gauge Green-Schwarz formalism), and finite (by explicitly checking for divergences in the amplitudes when the Riemann surface degenerates). There is no multiloop ambiguity in these Green-Schwarz scattering amplitudes since spacetime-supersymmetry is manifest (there is no sum over spin structures), and therefore the moduli space can be compactified.

Keywords

Cite

@article{arxiv.hep-th/9306109,
  title  = {A New Approach to the Green-Schwarz Superstring},
  author = {Nathan Berkovits},
  journal= {arXiv preprint arXiv:hep-th/9306109},
  year   = {2007}
}

Comments

(based on talks given at SUSY '93 and at Strings '93), 6 pages plain Tex, KCL-TH-93-9

R2 v1 2026-07-22T15:46:31.506Z