English

Rigid nongeometric orientifolds and the swampland

High Energy Physics - Theory 2022-02-15 v3

Abstract

Nongeometric flux compactifications with frozen complex structure moduli have been recently studied for several phenomenological purposes. In this context, we analyze the possibility of realizing de-Sitter solutions in the context of N=1{\cal N} =1 type II nongeometric flux compactifications using the T6/(Z3×Z3){\mathbb T}^6/({\mathbb Z}_3 \times {\mathbb Z}_3) toroidal orientifolds. For the type IIB case, we observe that the Bianchi identities are too strong to simultaneously allow both the NS-NS three-form flux (H3H_3) and the nongeometric (QQ) flux to take non-zero values, which makes this model irrelevant for phenomenology due to the no-scale structure. For the type IIA case, we find that all the (nongeometric) flux solutions satisfying the Bianchi identities result in de-Sitter no-go scenarios except for one case in which the no-go condition can be evaded. However for this case also, in our (limited) numerical investigation we do not find any de-Sitter vacua using the integer fluxes satisfying all the Bianchi identities.

Keywords

Cite

@article{arxiv.1909.10993,
  title  = {Rigid nongeometric orientifolds and the swampland},
  author = {Pramod Shukla},
  journal= {arXiv preprint arXiv:1909.10993},
  year   = {2022}
}

Comments

43 pages, arXiv admin note: some text overlap with arXiv:1909.08630 and arXiv:1712.07310; version 2: 45 pages, typos fixed and references added; version 3: 46 pages, minor changes, published version