English

Supermembranes and domain walls in $\mathcal N=1$, $D=4$ SYM

High Energy Physics - Theory 2020-04-16 v3

Abstract

We construct a manifestly supersymmetric and kappa-symmetry invariant worldvolume action describing the coupling of a dynamical membrane to an N=1\mathcal N=1, D=4D=4 SU(N)SU(N) super-Yang-Mills multiplet. Worldvolume scalar fields in this action are a Goldstone and a Goldstino associated with spontaneous breaking, by the membrane, of half of N=1\mathcal N=1, D=4D=4 supersymmetry. When the Goldstone fields are set to zero, the model reduces to an N=1\mathcal N=1, d=3d=3 SU(N)SU(N) Chern-Simons theory induced by the SYM coupling. We show that, when the membrane couples to the Veneziano-Yankielowicz (VY) effective theory of the N=1\mathcal N=1 SYM, it sources VY bulk field equations, separates two distinct SYM vacua and provides the missing contribution to the tension of BPS saturated domain-wall configurations, for which the membrane serves as a core. As a result, we obtain explicit BPS domain-wall solutions in the Veneziano-Yankielowicz theory. We also briefly discuss a supersymmetric system of an open membrane having a string attached to its boundary and coupled to a massive extension of the Veneziano-Yankielowicz model.

Keywords

Cite

@article{arxiv.1905.02743,
  title  = {Supermembranes and domain walls in $\mathcal N=1$, $D=4$ SYM},
  author = {Igor Bandos and Stefano Lanza and Dmitri Sorokin},
  journal= {arXiv preprint arXiv:1905.02743},
  year   = {2020}
}

Comments

39 pages, 5 figures, v2: comments, figure and references added; v3: further comments and references added, typos corrected, in subsection 6.3 found an inconsistency of the |k|=N BPS domain wall which was therefore removed from the list of the solutions