English

Global Properties of the Conformal Manifold for S-Fold Backgrounds

High Energy Physics - Theory 2021-10-06 v2

Abstract

We study a one-parameter family of N=2\mathcal{N}=2 anti-de Sitter vacua with U(1)2{\rm U}(1)^2 symmetry of gauged four-dimensional maximal supergravity, with dyonic gauge group [SO(6)×SO(1,1)]R12[{\rm SO}(6)\times {\rm SO}(1,1)]\ltimes \mathbb{R}^{12}. These backgrounds are known to correspond to Type IIB S-fold solutions with internal manifold of topology S1×S5S^1\times S^5. The family of AdS4_4 vacua is parametrized by a modulus χ\chi. Although χ\chi appears non-compact in the four-dimensional supergravity, we show that this is just an artefact of the four-dimensional description. We give the 10-dimensional geometric interpretation of the modulus and show that it actually has periodicity of 2πT\frac{2\pi}{T}, which is the inverse radius of S1S^1. We deduce this by providing the explicit D=10D=10 uplift of the family of vacua as well as computing the entire modulus-dependent Kaluza-Klein spectrum as a function of χ\chi. At the special values χ=0\chi=0 and χ=πT\chi=\frac{\pi}{T}, the symmetry enhances according to U(1)2U(2){\rm U}(1)^2\rightarrow{\rm U}(2), giving rise however to inequivalent Kaluza-Klein spectra. At χ=πT\chi=\frac{\pi}{T}, this realizes a bosonic version of the "space invaders" scenario with additional massless vector fields arising from formerly massive fields at higher Kaluza-Klein levels.

Keywords

Cite

@article{arxiv.2103.10797,
  title  = {Global Properties of the Conformal Manifold for S-Fold Backgrounds},
  author = {Alfredo Giambrone and Emanuel Malek and Henning Samtleben and Mario Trigiante},
  journal= {arXiv preprint arXiv:2103.10797},
  year   = {2021}
}

Comments

33 pages, 1 figure, subsections 4.2.1 and 5.4.1 added in which the symmetry properties of the spectrum with respect to the chi parameter is discussed in detail; typos corrected