English

Deformations of Superconformal Theories

High Energy Physics - Theory 2016-12-21 v1

Abstract

We classify possible supersymmetry-preserving relevant, marginal, and irrelevant deformations of unitary superconformal theories in d3d \geq 3 dimensions. Our method only relies on symmetries and unitarity. Hence, the results are model independent and do not require a Lagrangian description. Two unifying themes emerge: first, many theories admit deformations that reside in multiplets together with conserved currents. Such deformations can lead to modifications of the supersymmetry algebra by central and non-central charges. Second, many theories with a sufficient amount of supersymmetry do not admit relevant or marginal deformations, and some admit neither. The classification is complicated by the fact that short superconformal multiplets display a rich variety of sporadic phenomena, including supersymmetric deformations that reside in the middle of a multiplet. We illustrate our results with examples in diverse dimensions. In particular, we explain how the classification of irrelevant supersymmetric deformations can be used to derive known and new constraints on moduli-space effective actions.

Keywords

Cite

@article{arxiv.1602.01217,
  title  = {Deformations of Superconformal Theories},
  author = {Clay Cordova and Thomas T. Dumitrescu and Kenneth Intriligator},
  journal= {arXiv preprint arXiv:1602.01217},
  year   = {2016}
}

Comments

73 pages, 34 tables