A Bootstrap Study of Confinement in AdS

Fuente: arXiv
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Main Authors: Di Pietro, Lorenzo, Kousvos, Stefanos R., Meineri, Marco, Piazza, Alessandro, Serone, Marco, Vichi, Alessandro
Format: Preprint
Published: 2025
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author Di Pietro, Lorenzo
Kousvos, Stefanos R.
Meineri, Marco
Piazza, Alessandro
Serone, Marco
Vichi, Alessandro
author_facet Di Pietro, Lorenzo
Kousvos, Stefanos R.
Meineri, Marco
Piazza, Alessandro
Serone, Marco
Vichi, Alessandro
contents Yang-Mills theory in AdS$_{4}$ with Dirichlet boundary conditions is expected to undergo a transition as the AdS radius varies, since the boundary data is incompatible with confinement in flat space. Various mechanisms have been proposed for the disappearance of the Dirichlet boundary condition. From the boundary viewpoint, the associated $3d$ CFT is a deformation of a generalised free theory of non-Abelian conserved currents, with the deformation governed by the bulk gauge coupling. We test these scenarios by deriving non-perturbative constraints from the numerical conformal bootstrap of the four-point function of non-Abelian conserved currents. We rule out the scenario in which the boundary current decouples. Bounds on the lightest scalar operators disfavour a bulk Higgs mechanism and instead point to a transition driven by a scalar singlet becoming marginal. We also obtain bounds on other scalar operators and on the current central charge, and we refine character-based techniques incorporating parity and charge-conjugation symmetry to determine the operator spectrum of the $3d$ Generalised Free Vector theory. These results may be of independent interest beyond Yang-Mills theory in AdS.
format Preprint
id arxiv_https___arxiv_org_abs_2512_00150
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle A Bootstrap Study of Confinement in AdS
Di Pietro, Lorenzo
Kousvos, Stefanos R.
Meineri, Marco
Piazza, Alessandro
Serone, Marco
Vichi, Alessandro
High Energy Physics - Theory
High Energy Physics - Lattice
High Energy Physics - Phenomenology
Yang-Mills theory in AdS$_{4}$ with Dirichlet boundary conditions is expected to undergo a transition as the AdS radius varies, since the boundary data is incompatible with confinement in flat space. Various mechanisms have been proposed for the disappearance of the Dirichlet boundary condition. From the boundary viewpoint, the associated $3d$ CFT is a deformation of a generalised free theory of non-Abelian conserved currents, with the deformation governed by the bulk gauge coupling. We test these scenarios by deriving non-perturbative constraints from the numerical conformal bootstrap of the four-point function of non-Abelian conserved currents. We rule out the scenario in which the boundary current decouples. Bounds on the lightest scalar operators disfavour a bulk Higgs mechanism and instead point to a transition driven by a scalar singlet becoming marginal. We also obtain bounds on other scalar operators and on the current central charge, and we refine character-based techniques incorporating parity and charge-conjugation symmetry to determine the operator spectrum of the $3d$ Generalised Free Vector theory. These results may be of independent interest beyond Yang-Mills theory in AdS.
title A Bootstrap Study of Confinement in AdS
topic High Energy Physics - Theory
High Energy Physics - Lattice
High Energy Physics - Phenomenology
url https://arxiv.org/abs/2512.00150