English

Resolving spacetime singularities in flux compactifications & KKLT

High Energy Physics - Theory 2021-09-15 v4 High Energy Physics - Phenomenology

Abstract

In flux compactifications of type IIB string theory with D3 and seven-branes, the negative induced D3 charge localized on seven-branes leads to an apparently pathological profile of the metric sufficiently close to the source. With the volume modulus stabilized in a KKLT de Sitter vacuum this pathological region takes over a significant part of the entire compactification, threatening to spoil the KKLT effective field theory. In this paper we employ the Seiberg-Witten solution of pure SU(N)SU(N) super Yang-Mills theory to argue that wrapped seven-branes can be thought of as bound states of more microscopic exotic branes. We argue that the low-energy worldvolume dynamics of a stack of nn such exotic branes is given by the (A1,An1)(A_1,A_{n-1}) Argyres-Douglas theory. Moreover, the splitting of the perturbative (in α\alpha') seven-brane into its constituent branes at the non-perturbative level resolves the apparently pathological region close to the seven-brane and replaces it with a region of O(1)\mathcal{O}(1) Einstein frame volume. While this region generically takes up an O(1)\mathcal{O}(1) fraction of the compactification in a KKLT de Sitter vacuum we argue that a small flux superpotential \textit{dynamically} ensures that the 4d effective field theory of KKLT remains valid nevertheless.

Keywords

Cite

@article{arxiv.2101.05281,
  title  = {Resolving spacetime singularities in flux compactifications & KKLT},
  author = {Federico Carta and Jakob Moritz},
  journal= {arXiv preprint arXiv:2101.05281},
  year   = {2021}
}

Comments

42 pages, 19 figures, 1 appendix; v2: references added, minor corrections; v3: monodromies corrected, reference added; v4: matches version published in JHEP

R2 v1 2026-06-23T22:08:20.425Z