On the branes behind scale-separated AdS3 flux vacua

A bstract We investigate the brane origin of supersymmetric and scale-separated AdS 3 flux vacua arising in a class of type IIB orientifold reductions with G 2 -structure. First, using the effective three-dimensional supergravity together with explicit uplift formulae, we trace back the F (7) and F (3) fluxes responsible for scale separation and identify the type IIB background that is probed by the corresponding D1- and D5-branes. Second, by restoring such D1- and D5-branes, we obtain a type IIB solution that interpolates between the previous background in the asymptotic region and the scale-separated AdS 3 flux vacua in the near-horizon region. Third, by working directly in ten dimensions, we construct a codimension-one D1-D5-KK5 intersection whose near-horizon region realises the scale-separated AdS 3 flux vacua. Our results provide a higher-dimensional interpretation of these flux vacua in terms of (smeared) brane configurations.

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Publication Details

Journal
Journal of High Energy Physics
Published
2026-09-28
DOI
https://doi.org/10.1007/jhep09(2026)279
Primary Topic
Black Holes and Theoretical Physics
Type
article
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article

On the branes behind scale-separated AdS3 flux vacua

Adolfo Guarino, Giuseppe Sudano, Álvaro Arboleya, Clara Roldán-Domínguez
Journal of High Energy Physics
Black Holes and Theoretical Physics
article

On the branes behind scale-separated AdS3 flux vacua

Adolfo Guarino, Giuseppe Sudano, Álvaro Arboleya, Clara Roldán-Domínguez
article en

Abstract

A bstract We investigate the brane origin of supersymmetric and scale-separated AdS 3 flux vacua arising in a class of type IIB orientifold reductions with G 2 -structure. First, using the effective three-dimensional supergravity together with explicit uplift formulae, we trace back the F (7) and F (3) fluxes responsible for scale separation and identify the type IIB background that is probed by the corresponding D1- and D5-branes. Second, by restoring such D1- and D5-branes, we obtain a type IIB solution that interpolates between the previous background in the asymptotic region and the scale-separated AdS 3 flux vacua in the near-horizon region. Third, by working directly in ten dimensions, we construct a codimension-one D1-D5-KK5 intersection whose near-horizon region realises the scale-separated AdS 3 flux vacua. Our results provide a higher-dimensional interpretation of these flux vacua in terms of (smeared) brane configurations.

Journal of High Energy PhysicsVol. 2026(9)
Universidad de Oviedo (ES), Universidade Federal do Espírito Santo (BR)
Openalex Percentile: Top 48%
Black Holes and Theoretical Physics
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On the branes behind scale-separated AdS3 flux vacua — Adolfo Guarino, Giuseppe Sudano, et al. · Journal of High Energy Physics (2026) | TGRS Research Map | TGRS