New AdS4 vacua in dyonic ISO(7) gauged supergravity
New AdS4 vacua in dyonic ISO(7) gauged supergravity
We identify 219 AdS4 solutions in four-dimensional dyonically gauged ISO(7) N= 8 supergravity and present some of their properties. One of the new solutions preserves N= 1 supersymmetry and provides a rare explicit example of an AdS4 vacuum dual to a 3d SCFT with no continuous global symmetry. There are also two new non-supersymmetric solutions for which all 70 scalar fields in the supergravity theory have masses above the BF bound. All of these AdS4 solutions can be uplifted to massive type IIA supergravity. Motivated by this we present the low lying operator spectra of the dual 3d CFTs for all known supersymmetric AdS4 solutions in the theory and organize them into superconformal multiplets.
Bobev, Nikolay
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Fischbacher, Thomas
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Gautason, Fridrik Freyr
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Pilch, Krzysztof
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25 February 2021
Bobev, Nikolay
a6de4447-994a-414a-8910-26cdeb7f54d9
Fischbacher, Thomas
f2bc71f8-3e09-43f0-a0d1-c0f5a2a26e06
Gautason, Fridrik Freyr
0c48d448-e092-48bf-a310-45862bd6fc5f
Pilch, Krzysztof
c43727ef-e9c8-48d0-a587-8f5bc940c1e8
Bobev, Nikolay, Fischbacher, Thomas, Gautason, Fridrik Freyr and Pilch, Krzysztof
(2021)
New AdS4 vacua in dyonic ISO(7) gauged supergravity.
Journal of High Energy Physics, 2021, [215].
(doi:10.1007/jhep02(2021)215).
Abstract
We identify 219 AdS4 solutions in four-dimensional dyonically gauged ISO(7) N= 8 supergravity and present some of their properties. One of the new solutions preserves N= 1 supersymmetry and provides a rare explicit example of an AdS4 vacuum dual to a 3d SCFT with no continuous global symmetry. There are also two new non-supersymmetric solutions for which all 70 scalar fields in the supergravity theory have masses above the BF bound. All of these AdS4 solutions can be uplifted to massive type IIA supergravity. Motivated by this we present the low lying operator spectra of the dual 3d CFTs for all known supersymmetric AdS4 solutions in the theory and organize them into superconformal multiplets.
Text
JHEP02(2021)215
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Accepted/In Press date: 17 January 2021
Published date: 25 February 2021
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Local EPrints ID: 497462
URI: http://eprints.soton.ac.uk/id/eprint/497462
ISSN: 1126-6708
PURE UUID: a3e6122f-a45f-4311-855f-f337298b54f4
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Date deposited: 23 Jan 2025 17:35
Last modified: 22 Aug 2025 02:43
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Author:
Nikolay Bobev
Author:
Thomas Fischbacher
Author:
Fridrik Freyr Gautason
Author:
Krzysztof Pilch
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