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Systematics of Type IIA moduli stabilisation

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arxiv 2007.00672 v2 pith:M4RN4YWY submitted 2020-07-01 hep-th

Systematics of Type IIA moduli stabilisation

classification hep-th
keywords casegeometricpotentialtypevacuaallowsanalyseargue
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We analyse the flux-induced scalar potential for type IIA orientifolds in the presence of $p$-form, geometric and non-geometric fluxes. Just like in the Calabi-Yau case, the potential presents a bilinear structure, with a factorised dependence on axions and saxions. This feature allows one to perform a systematic search for vacua, which we implement for the case of geometric backgrounds. Guided by stability criteria, we consider configurations with a particular on-shell F-term pattern, for which we derive a no-go result for de Sitter extrema. We classify branches of supersymmetric and non-supersymmetric vacua, and argue that the latter are perturbatively stable for a large subset of them. Our solutions reproduce and generalise previous results in the literature, obtained either from the 4d or 10d viewpoint.

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  1. F-theory flux vacua at large complex structure

    hep-th 2021-05 unverdicted novelty 7.0

    At large complex structure in F-theory, the F-term potential simplifies to V = Z^{AB} ρ_A ρ_B, yielding two families of flux vacua with all complex structure moduli fixed, one with bounded saxion vevs and one with unb...