English

Dimensionally reduced SYM$_4$ at large-$N$: an intriguing Coulomb approximation

High Energy Physics - Theory 2015-03-17 v2

Abstract

We consider the light-cone (LC) gauge and LC quantization of the dimensional reduction of super Yang Mills theory from four to two dimensions. After integrating out all unphysical degrees of freedom, the non-local LC Hamiltonian exhibits an explicit N=(2,2){\cal N}=(2,2) supersymmetry. A further SUSY-preserving compactification of LC-space on a torus of radius RR, allows for a large-NN numerical study where the smooth large-RR limit of physical quantities can be checked. As a first step, we consider a simple, yet quite rich, "Coulomb approximation" that maintains an N=(1,1){\cal N}=(1,1) subgroup of the original supersymmetry and leads to a non-trivial generalization of 't Hooft's model with an arbitrary --but conserved-- number of partons. We compute numerically the eigenvalues and eigenvectors both in momentum and in position space. Our results, so far limited to the sectors with 2, 3 and 4 partons, directly and quantitatively confirm a simple physical picture in terms of a string-like interaction with the expected tension among pairs of nearest-neighbours along the single-trace characterizing the large-NN limit. Although broken by our approximation, traces of the full N=(2,2){\cal N}=(2,2) supersymmetry are still visible in the low-lying spectrum.

Keywords

Cite

@article{arxiv.1011.1200,
  title  = {Dimensionally reduced SYM$_4$ at large-$N$: an intriguing Coulomb approximation},
  author = {Daniele Dorigoni and Gabriele Veneziano and Jacek Wosiek},
  journal= {arXiv preprint arXiv:1011.1200},
  year   = {2015}
}

Comments

30 pages, 13 figures, Footnote page 3 replaced, Note Added at the end, 4 References added

R2 v1 2026-06-21T16:39:06.622Z