On scale-separated supersymmetric AdS$_2$ flux vacua

Fuente: arXiv
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Main Authors: Cribiori, N., Farakos, F., Liatsos, N.
Format: Preprint
Published: 2024
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author Cribiori, N.
Farakos, F.
Liatsos, N.
author_facet Cribiori, N.
Farakos, F.
Liatsos, N.
contents We argue that scale-separated AdS$_2$ vacua with at least two preserved supercharges cannot arise from flux compactifications in a regime of computational control. We deduce this by showing that the AdS$_2$ scale is parametrically of the same order as the tension of a fundamental BPS domain wall, which provides an upper bound on the UV cutoff. Since the latter does not need to be associated to any geometric scale, the argument excludes scale separation in a broader sense than what commonly considered. Our claim is exemplified by a bottom-up 2D supergravity analysis as well as top-down models from Type II flux compactifications.
format Preprint
id arxiv_https___arxiv_org_abs_2411_04932
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle On scale-separated supersymmetric AdS$_2$ flux vacua
Cribiori, N.
Farakos, F.
Liatsos, N.
High Energy Physics - Theory
We argue that scale-separated AdS$_2$ vacua with at least two preserved supercharges cannot arise from flux compactifications in a regime of computational control. We deduce this by showing that the AdS$_2$ scale is parametrically of the same order as the tension of a fundamental BPS domain wall, which provides an upper bound on the UV cutoff. Since the latter does not need to be associated to any geometric scale, the argument excludes scale separation in a broader sense than what commonly considered. Our claim is exemplified by a bottom-up 2D supergravity analysis as well as top-down models from Type II flux compactifications.
title On scale-separated supersymmetric AdS$_2$ flux vacua
topic High Energy Physics - Theory
url https://arxiv.org/abs/2411.04932