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Supersymmetric Liouville theory in AdS2 and AdS/CFT

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BORIS DOI
10.7892/boris.139645
Publisher DOI
10.1007/JHEP11(2019)051
Description
In a series of recent papers, a special kind of AdS2/CFT1 duality was observed: the boundary correlators of elementary fields that appear in the Lagrangian of a 2d conformal theory in rigid AdS2 background are the same as the correlators of the corresponding primary operators in the chiral half of that 2d CFT in at space restricted to the real line. The examples considered were: (i) the Liouville theory where the operator dual to the Liouville scalar in AdS2 is the stress tensor; (ii) the abelian Toda theory where the operators dual to the Toda scalars are the W-algebra generators; (iii) the non-abelian Toda theory where the Liouville field is dual to the stress tensor while the extra gauged WZW theory scalars are dual to non-abelian parafermionic operators. By direct Witten diagram computations
in AdS2 one can check that the structure of the boundary correlators is indeed consistent with the Virasoro (or higher) symmetry. Here we consider a supersymmetric generalization: the N = 1 superconformal Liouville theory in AdS2. We start with the super Liouville theory coupled to 2d supergravity and show that a consistent restriction to rigid AdS2 background requires a non-zero value of the supergravity auxiliary field and thus a modification of the Liouville potential from its familiar at-space form. We show that the Liouville scalar and its fermionic partner are dual to the chiral half of the stress tensor and the supercurrent of the super Liouville theory on the plane. We perform tests supporting the duality by explicitly computing AdS2 Witten diagrams with bosonic and fermionic loops.
Date of Publication
2019-11-11
Publication Type
Article
Subject(s)
500 Science > 530 Physics
Language(s)
en
Contributor(s)
Beccaria, Matteo
Jiang, Hongliang
Albert Einstein Center for Fundamental Physics (AEC)
Institut für theoretische Physik der Universität Bern (ITP)
Tseytlin, Arkady A.
Additional Credits
Albert Einstein Center for Fundamental Physics (AEC)
Series
Journal of High Energy Physics
Publisher
Springer
ISSN
1029-8479
Access(Rights)
open.access
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