2019
DOI: 10.1007/jhep09(2019)123
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Leaving the Swampland: non-geometric fluxes and the distance conjecture

Abstract: We study a Type IIB isotropic toroidal compactification with non-geometric fluxes. Under the assumption of a hierarchy on the moduli, an effective scalar potential is constructed showing a runaway direction on the real part of the Kähler modulus while the rest of the moduli are stabilized. For the effective model to be consistent it is required that displacements in the field space are finite. Infinite distances in field space would imply a breakdown in the hierarchy assumption on the moduli. In this context, … Show more

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Cited by 9 publications
(9 citation statements)
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References 73 publications
(106 reference statements)
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“…Hence we can expect a small value for |V min | if ω and |P 2 | at U = U 0 are also smaller than one. As shown in [44], ω ∼ O(1) in flux units. This implies that…”
Section: Appendix B: Isotropic Toroidal Compactifications With Non-gementioning
confidence: 78%
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“…Hence we can expect a small value for |V min | if ω and |P 2 | at U = U 0 are also smaller than one. As shown in [44], ω ∼ O(1) in flux units. This implies that…”
Section: Appendix B: Isotropic Toroidal Compactifications With Non-gementioning
confidence: 78%
“…A hierarchy on the integer values associated to all fluxes in turn establishes a hierarchy on the masses associated to the modulus. This is, if we take for example the R-R fluxes to be larger than the others f h, b, we expect in this model, that the complex structure modulus would be the heaviest modulus M U M S , M T [44]. Next we write the expected hierarchies between the moduli masses that are obtained by setting one of the explored hierarchies among the fluxes:…”
Section: Resultsmentioning
confidence: 99%
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