We explore large-N symmetric orbifolds of the N = 2 minimal models, and find evidence that their moduli spaces each contain a supergravity point. We identify single-trace exactly marginal operators that deform them away from the symmetric orbifold locus. We also show that their elliptic genera exhibit slow growth consistent with supergravity spectra in AdS3. We thus propose an infinite family of new holographic CFTs.

Belin, A., Benjamin, N., Castro, A., Harrison, S., Keller, C. (2020). N = 2 minimal models: A holographic needle in a symmetric orbifold haystack. SCIPOST PHYSICS, 8(6) [10.21468/SciPostPhys.8.6.084].

N = 2 minimal models: A holographic needle in a symmetric orbifold haystack

Belin A;
2020

Abstract

We explore large-N symmetric orbifolds of the N = 2 minimal models, and find evidence that their moduli spaces each contain a supergravity point. We identify single-trace exactly marginal operators that deform them away from the symmetric orbifold locus. We also show that their elliptic genera exhibit slow growth consistent with supergravity spectra in AdS3. We thus propose an infinite family of new holographic CFTs.
Articolo in rivista - Articolo scientifico
AdS/CFT
English
2020
8
6
084
open
Belin, A., Benjamin, N., Castro, A., Harrison, S., Keller, C. (2020). N = 2 minimal models: A holographic needle in a symmetric orbifold haystack. SCIPOST PHYSICS, 8(6) [10.21468/SciPostPhys.8.6.084].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/396471
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