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Spontaneous Conformal Symmetry Breaking in Fishnet CFT

Quantum field theories with exact but spontaneously broken conformal invariance have an intriguing feature: their vacuum energy (cosmological constant) is equal to zero. Up to now, the only known ultraviolet complete theories where conformal symmetry can be spontaneously broken were associated with...

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Detalles Bibliográficos
Autores principales: Karananas, Georgios K., Kazakov, Vladimir, Shaposhnikov, Mikhail
Lenguaje:eng
Publicado: 2019
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.physletb.2020.135922
http://cds.cern.ch/record/2687980
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author Karananas, Georgios K.
Kazakov, Vladimir
Shaposhnikov, Mikhail
author_facet Karananas, Georgios K.
Kazakov, Vladimir
Shaposhnikov, Mikhail
author_sort Karananas, Georgios K.
collection CERN
description Quantum field theories with exact but spontaneously broken conformal invariance have an intriguing feature: their vacuum energy (cosmological constant) is equal to zero. Up to now, the only known ultraviolet complete theories where conformal symmetry can be spontaneously broken were associated with supersymmetry (SUSY), with the most prominent example being the N =4 SUSY Yang-Mills. In this Letter we show that the recently proposed conformal “fishnet” theory supports at the classical level a rich set of flat directions (moduli) along which conformal symmetry is spontaneously broken. We demonstrate that, at least perturbatively, some of these vacua survive in the full quantum theory (in the planar limit, at the leading order of 1/Nc expansion) without any fine tuning. The vacuum energy is equal to zero along these flat directions, providing the first non-SUSY example of a four-dimensional quantum field theory with “natural” breaking of conformal symmetry.
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spelling cern-26879802023-10-04T05:59:26Zdoi:10.1016/j.physletb.2020.135922http://cds.cern.ch/record/2687980engKarananas, Georgios K.Kazakov, VladimirShaposhnikov, MikhailSpontaneous Conformal Symmetry Breaking in Fishnet CFThep-thParticle Physics - TheoryQuantum field theories with exact but spontaneously broken conformal invariance have an intriguing feature: their vacuum energy (cosmological constant) is equal to zero. Up to now, the only known ultraviolet complete theories where conformal symmetry can be spontaneously broken were associated with supersymmetry (SUSY), with the most prominent example being the N =4 SUSY Yang-Mills. In this Letter we show that the recently proposed conformal “fishnet” theory supports at the classical level a rich set of flat directions (moduli) along which conformal symmetry is spontaneously broken. We demonstrate that, at least perturbatively, some of these vacua survive in the full quantum theory (in the planar limit, at the leading order of 1/Nc expansion) without any fine tuning. The vacuum energy is equal to zero along these flat directions, providing the first non-SUSY example of a four-dimensional quantum field theory with “natural” breaking of conformal symmetry.Quantum field theories with exact but spontaneously broken conformal invariance have an intriguing feature: their vacuum energy (cosmological constant) is equal to zero. Up to now, the only known ultraviolet complete theories where conformal symmetry can be spontaneously broken were associated with supersymmetry (SUSY), with the most prominent example being the $\mathcal N$=4 SUSY Yang-Mills. In this Letter we show that the recently proposed conformal "fishnet" theory supports at the classical level a rich set of flat directions (moduli) along which conformal symmetry is spontaneously broken. We demonstrate that, at least perturbatively, some of these vacua survive in the full quantum theory (in the planar limit, at the leading order of $1/N_c$ expansion) without any fine tuning. The vacuum energy is equal to zero along these flat directions, providing the first non-SUSY example of a four-dimensional quantum field theory with "natural" breaking of conformal symmetry.arXiv:1908.04302CERN-TH-2019-147oai:cds.cern.ch:26879802019-08-12
spellingShingle hep-th
Particle Physics - Theory
Karananas, Georgios K.
Kazakov, Vladimir
Shaposhnikov, Mikhail
Spontaneous Conformal Symmetry Breaking in Fishnet CFT
title Spontaneous Conformal Symmetry Breaking in Fishnet CFT
title_full Spontaneous Conformal Symmetry Breaking in Fishnet CFT
title_fullStr Spontaneous Conformal Symmetry Breaking in Fishnet CFT
title_full_unstemmed Spontaneous Conformal Symmetry Breaking in Fishnet CFT
title_short Spontaneous Conformal Symmetry Breaking in Fishnet CFT
title_sort spontaneous conformal symmetry breaking in fishnet cft
topic hep-th
Particle Physics - Theory
url https://dx.doi.org/10.1016/j.physletb.2020.135922
http://cds.cern.ch/record/2687980
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AT shaposhnikovmikhail spontaneousconformalsymmetrybreakinginfishnetcft