In this paper we discuss an infinite class of AdS6 backgrounds in Type IIB supergravity dual to five dimensional SCFTs whose low energy description is in terms of linear quiver theories. The quantisation of the Page charges imposes that each solution is determined once a convex, piece-wise linear function is specified. In the dual field theory, we interpret this function as encoding the ranks of colour and flavour groups in the associated quiver. We check our proposal with several examples and provide general expressions for the holographic central charge and the Wilson loop VEV. Some solutions outside this general class, with less clear quiver interpretation, are also discussed.

Legramandi, A., Nunez, C. (2022). Electrostatic Description of Five-dimensional SCFTs. NUCLEAR PHYSICS. B, 974(January 2022) [10.1016/j.nuclphysb.2021.115630].

Electrostatic Description of Five-dimensional SCFTs

Legramandi, A;
2022

Abstract

In this paper we discuss an infinite class of AdS6 backgrounds in Type IIB supergravity dual to five dimensional SCFTs whose low energy description is in terms of linear quiver theories. The quantisation of the Page charges imposes that each solution is determined once a convex, piece-wise linear function is specified. In the dual field theory, we interpret this function as encoding the ranks of colour and flavour groups in the associated quiver. We check our proposal with several examples and provide general expressions for the holographic central charge and the Wilson loop VEV. Some solutions outside this general class, with less clear quiver interpretation, are also discussed.
Articolo in rivista - Articolo scientifico
High Energy Physics - Theory; High Energy Physics - Theory
English
2-dic-2021
2022
974
January 2022
115630
open
Legramandi, A., Nunez, C. (2022). Electrostatic Description of Five-dimensional SCFTs. NUCLEAR PHYSICS. B, 974(January 2022) [10.1016/j.nuclphysb.2021.115630].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/488912
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