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Moduli stabilization with non-geometric fluxes -- comments on tadpole contributions and de-Sitter vacua

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arxiv 2011.08227 v2 pith:RTVJD3XU submitted 2020-11-16 hep-th

classification hep-th
keywords de-sitterfluxesmoduliargueconstructionscontributionsgeometricnon-
verification ladder T0 review T1 audit T2 compute T3 formal
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We study moduli stabilization for type IIB orientifold compactifications on Calabi-Yau three-folds with (non-)geometric fluxes. For this setting it is possible to stabilize all closed-string moduli classically without the need for non-perturbative contributions, and examples of stable de-Sitter constructions can be found in the literature which violate a prominent swampland conjecture. In this paper we derive general properties of non-geometric flux-compactifications, we argue that the contribution of fluxes to the tadpole cancellation conditions should be similar to D-branes (and not anti-D-branes), and we exclude supersymmetric Minkowski vacua for certain cases. We also reassess known stable de-Sitter constructions with (non-)geometric H-, F-, Q- and R-fluxes and argue that these are not consistent in string theory.

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  1. Towards a String Realization of the Dark Dimension via T-folds

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    A Scherk-Schwarz T-fold compactification is engineered so that, along a selected runaway trajectory, the scalar potential scales as V proportional to m_KK^4, as required by the Dark Dimension Scenario.

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