English

Aspects of compactification on a linear dilaton background

High Energy Physics - Theory 2021-09-30 v2

Abstract

We consider the most general Kaluza-Klein (KK) compactification on S1/Z2S^1/\mathbb{Z}_2 of a five dimensional (5D5D) graviton-dilaton system, with a non-vanishing dilaton background varying linearly along the fifth dimension. We show that this background produces a Higgs mechanism for the KK vector coming from the 5D5D metric, which becomes massive by absorbing the string frame radion. The N=2\mathcal{N}=2 minimal supersymmetric extension of this model, recently built as the holographic dual of Little String Theory, is then re-investigated. An analogous mechanism can be considered for the 4D4D vector coming from the (universal) 5D5D Kalb-Ramond two-form. Packaging the two massive vectors into a spin-3/23/2 massive multiplet, it is shown that the massless spectrum arranges into a N=1\mathcal{N}=1, D=4D=4 supersymmetric theory. This projection is compatible with an orbifold which preserves half of the original supersymmetries already preserved by the background. The description of the partial breaking N=2N=1\mathcal{N}=2\rightarrow\mathcal{N}=1 in this framework, with only vector multiplets and no hypermultiplets, remains an interesting open question which deserves further investigation.

Keywords

Cite

@article{arxiv.2106.15184,
  title  = {Aspects of compactification on a linear dilaton background},
  author = {Ignatios Antoniadis and Chrysoula Markou and François Rondeau},
  journal= {arXiv preprint arXiv:2106.15184},
  year   = {2021}
}

Comments

50 pages. Published version

R2 v1 2026-06-24T03:42:17.538Z