English

A 4D IIB Flux Vacuum and Supersymmetry Breaking. I. Fermionic Spectrum

High Energy Physics - Theory 2022-09-14 v2 General Relativity and Quantum Cosmology High Energy Physics - Phenomenology

Abstract

We consider the type-IIB supergravity vacua that include an internal T5T^5, depend on a single coordinate rr and respect a four-dimensional Poincar\'e symmetry, with the aim of highlighting low-energy spectra with broken supersymmetry and a bounded string coupling. These vacua are characterized by the flux Φ\Phi of the self-dual five form in the internal torus, the length \ell of the interval described by the coordinate rr, a dilaton profile that is inevitably constant and a strictly positive dimensionless parameter hh. As \ell\rightarrow\infty while retaining finite values for Φ\Phi and h54\ell \,h^{-\,\frac{5}{4}}, half of the original ten-dimensional supersymmetry is recovered, while finite values of \ell break it completely. In the large-\ell limit one boundary disappears but the other is still present, and is felt as a BPS orientifold by a probe brane. In this paper we focus on the fermionic zero modes and show that, although supersymmetry is broken for finite values of \ell, they are surprisingly those of four-dimensional N=4N=4 supergravity coupled to five vector multiplets. The gravitini can acquire masses via radiative corrections, absorbing four of the massless spin-12\frac{1}{2} modes.

Keywords

Cite

@article{arxiv.2206.03340,
  title  = {A 4D IIB Flux Vacuum and Supersymmetry Breaking. I. Fermionic Spectrum},
  author = {J. Mourad and A. Sagnotti},
  journal= {arXiv preprint arXiv:2206.03340},
  year   = {2022}
}

Comments

63 pages, LaTeX, 3 eps figures. Minor clarifications added. Final version to appear in JHEP