Journal article
Holographic renormalization and supersymmetry
- Abstract:
- Holographic renormalization is a systematic procedure for regulating divergences in observables in asymptotically locally AdS spacetimes. For dual boundary field theories which are supersymmetric it is natural to ask whether this defines a supersymmetric renormalization scheme. Recent results in localization have brought this question into sharp focus: rigid supersymmetry on a curved boundary requires specific geometric structures, and general arguments imply that BPS observables, such as the partition function, are invariant under certain deformations of these structures. One can then ask if the dual holographic observables are similarly invariant. We study this question in minimal N = 2 gauged supergravity in four and five dimensions. In four dimensions we show that holographic renormalization precisely reproduces the expected field theory results. In five dimensions we find that no choice of standard holographic counterterms is compatible with supersymmetry, which leads us to introduce novel finite boundary terms. For a class of solutions satisfying certain topological assumptions we provide some independent tests of these new boundary terms, in particular showing that they reproduce the expected VEVs of conserved charges.
- Publication status:
- Published
- Peer review status:
- Peer reviewed
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(Preview, Version of record, pdf, 1.0MB, Terms of use)
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- Publisher copy:
- 10.1007/JHEP02(2017)132
Authors
+ Simons Center for Geometry and Physics,
Stony Brook University
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- Funding agency for:
- Benetti Genolini, P
+ Engineering and Physical Sciences Research Council
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- Funding agency for:
- Benetti Genolini, P
- Publisher:
- Springer Berlin Heidelberg
- Journal:
- Journal of High Energy Physics More from this journal
- Volume:
- 2017
- Article number:
- 132
- Publication date:
- 2017-01-01
- Acceptance date:
- 2017-02-18
- DOI:
- ISSN:
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1029-8479
- Keywords:
- Pubs id:
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pubs:680861
- UUID:
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uuid:e6283ddc-273b-4559-afc5-3ca7ab982514
- Local pid:
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pubs:680861
- Source identifiers:
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680861
- Deposit date:
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2017-02-21
- ARK identifier:
Terms of use
- Copyright holder:
- Benetti Genolini et al
- Copyright date:
- 2017
- Notes:
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Copyright © 2017 The Authors. This article is distributed under the terms of the Creative Commons
Attribution License (CC-BY 4.0), which permits any use, distribution and reproduction in
any medium, provided the original author(s) and source are credited.
- Licence:
- CC Attribution (CC BY)
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