Extrinsic Holographic Renormalization for a Scalar Field

Fuente: arXiv
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Hauptverfasser: Anastasiou, Giorgos, Araya, Ignacio J., Ávila, Daniel, Guijosa, Alberto, Patiño-López, Sergio
Format: Preprint
Veröffentlicht: 2024
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author Anastasiou, Giorgos
Araya, Ignacio J.
Ávila, Daniel
Guijosa, Alberto
Patiño-López, Sergio
author_facet Anastasiou, Giorgos
Araya, Ignacio J.
Ávila, Daniel
Guijosa, Alberto
Patiño-López, Sergio
contents In the context of the holographic correspondence, we introduce a purely extrinsic renormalization prescription, exemplified with the case of a minimally-coupled scalar field in AdS space. The counterterms depend only on the field and its radial derivatives. This would seem to conflict with the Dirichlet variational principle, but we show that consistency follows from the fact that the asymptotic structure of asymptotically locally AdS spacetimes requires not only the leading, but also all of the subleading non-normalizable modes to be fixed as a boundary condition. Crucially, as seen from a path integral definition of the bulk partition function involved in the standard GKPW formula, this condition is valid away from the saddle. We find that the extrinsic renormalization prescription is maximally efficient when the scalar field is massless, which is suggestive of a connection with the Kounterterm method for renormalization of pure gravity.
format Preprint
id arxiv_https___arxiv_org_abs_2405_15186
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Extrinsic Holographic Renormalization for a Scalar Field
Anastasiou, Giorgos
Araya, Ignacio J.
Ávila, Daniel
Guijosa, Alberto
Patiño-López, Sergio
High Energy Physics - Theory
In the context of the holographic correspondence, we introduce a purely extrinsic renormalization prescription, exemplified with the case of a minimally-coupled scalar field in AdS space. The counterterms depend only on the field and its radial derivatives. This would seem to conflict with the Dirichlet variational principle, but we show that consistency follows from the fact that the asymptotic structure of asymptotically locally AdS spacetimes requires not only the leading, but also all of the subleading non-normalizable modes to be fixed as a boundary condition. Crucially, as seen from a path integral definition of the bulk partition function involved in the standard GKPW formula, this condition is valid away from the saddle. We find that the extrinsic renormalization prescription is maximally efficient when the scalar field is massless, which is suggestive of a connection with the Kounterterm method for renormalization of pure gravity.
title Extrinsic Holographic Renormalization for a Scalar Field
topic High Energy Physics - Theory
url https://arxiv.org/abs/2405.15186