We construct non-geometric AdS4solutions of IIB string theory where the fields in overlapping patches are glued by elements of the S-duality group. We obtain them by suitable quotients of compact and non-compact geometric solutions. The quotient procedure suggests CFT duals as quiver theories with links involving the so-called T [U(N)] theory. We test the validity of the non-geometric solutions (and of our proposed holographic duality) by computing the three-sphere partition function Z of the CFTs. A first class of solutions is obtained by an S-duality quotient of Janus-type non-compact solutions and is dual to 3d N= 4 SCFTs; for these we manage to compute Z of the dual CFT at finite N, and it agrees perfectly with the supergravity result in the large N limit. A second class has five-branes, it is obtained by a Möbius-like S-quotient of ordinary compact solutions and is dual to 3d N= 3 SCFTs. For these, Z agrees with the supergravity result if one chooses the limit carefully so that the effect of the fivebranes does not backreact on the entire geometry. Other limits suggest the existence of IIA duals.

Assel, B., Tomasiello, A. (2018). Holographic duals of 3d S-fold CFTs. JOURNAL OF HIGH ENERGY PHYSICS, 2018(6) [10.1007/JHEP06(2018)019].

Holographic duals of 3d S-fold CFTs

Tomasiello, Alessandro
2018

Abstract

We construct non-geometric AdS4solutions of IIB string theory where the fields in overlapping patches are glued by elements of the S-duality group. We obtain them by suitable quotients of compact and non-compact geometric solutions. The quotient procedure suggests CFT duals as quiver theories with links involving the so-called T [U(N)] theory. We test the validity of the non-geometric solutions (and of our proposed holographic duality) by computing the three-sphere partition function Z of the CFTs. A first class of solutions is obtained by an S-duality quotient of Janus-type non-compact solutions and is dual to 3d N= 4 SCFTs; for these we manage to compute Z of the dual CFT at finite N, and it agrees perfectly with the supergravity result in the large N limit. A second class has five-branes, it is obtained by a Möbius-like S-quotient of ordinary compact solutions and is dual to 3d N= 3 SCFTs. For these, Z agrees with the supergravity result if one chooses the limit carefully so that the effect of the fivebranes does not backreact on the entire geometry. Other limits suggest the existence of IIA duals.
Articolo in rivista - Articolo scientifico
AdS-CFT Correspondence; Duality in Gauge Field Theories; Flux compactifications; String Duality; High Energy Physics - Theory; High Energy Physics - Theory; Nuclear and High Energy Physics
English
2018
2018
6
19
partially_open
Assel, B., Tomasiello, A. (2018). Holographic duals of 3d S-fold CFTs. JOURNAL OF HIGH ENERGY PHYSICS, 2018(6) [10.1007/JHEP06(2018)019].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/204728
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