Topological Constraints in the LARGE-Volume Scenario
Abstract
We elaborate on recent results regarding the self-consistency of de Sitter vacua in the LARGE-volume scenario of type IIB string theory. In particular, we analyze to what extent the control over warping, curvature and corrections depends on the topology and the orientifold/brane data of a compactification. We compute a general bound on the magnitude of these corrections which strongly constrains the D3 tadpole. The minimally required tadpole ranges from to or more and depends strongly on other data, in particular on the Euler number of the Calabi-Yau 3-fold, the triple-self-intersection and Euler numbers of the small divisor and the coefficient appearing in the non-perturbative superpotential. We give arguments suggesting that satisfying these constraints is very challenging and perhaps impossible.
Cite
@article{arxiv.2205.02856,
title = {Topological Constraints in the LARGE-Volume Scenario},
author = {Daniel Junghans},
journal= {arXiv preprint arXiv:2205.02856},
year = {2022}
}
Comments
33 pages. v2: comments and references added. v3: comments and references added