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Conformal Window 2.0: The Large $N_f$ Safe Story

We extend the phase diagram of SU(N) gauge-fermion theories as a function of the number of flavors and colors to the region in which asymptotic freedom is lost. We argue, using large Nf results, for the existence of an ultraviolet interacting fixed point at a sufficiently large number of flavors ope...

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Detalles Bibliográficos
Autores principales: Antipin, Oleg, Sannino, Francesco
Lenguaje:eng
Publicado: 2017
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevD.97.116007
http://cds.cern.ch/record/2282816
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author Antipin, Oleg
Sannino, Francesco
author_facet Antipin, Oleg
Sannino, Francesco
author_sort Antipin, Oleg
collection CERN
description We extend the phase diagram of SU(N) gauge-fermion theories as a function of the number of flavors and colors to the region in which asymptotic freedom is lost. We argue, using large Nf results, for the existence of an ultraviolet interacting fixed point at a sufficiently large number of flavors opening up to a second ultraviolet conformal window in the number of flavors vs colors phase diagram. We first review the state-of-the-art for the large Nf beta function and then estimate the lower boundary of the ultraviolet window. The theories belonging to this new region are examples of safe non-Abelian quantum electrodynamics, termed here safe QCD. Therefore, according to Wilson, they are fundamental. An important critical quantity is the fermion mass anomalous dimension at the ultraviolet fixed point that we determine at leading order in 1/Nf. We discover that its value is comfortably below the bootstrap bound. We also investigate the Abelian case and find that at the potential ultraviolet fixed point the related fermion mass anomalous dimension has a singular behavior suggesting that a more careful investigation of its ultimate fate is needed.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2017
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spelling cern-22828162021-05-03T20:24:13Zdoi:10.1103/PhysRevD.97.116007http://cds.cern.ch/record/2282816engAntipin, OlegSannino, FrancescoConformal Window 2.0: The Large $N_f$ Safe Storyhep-thParticle Physics - Theoryhep-latParticle Physics - Latticehep-phParticle Physics - PhenomenologyWe extend the phase diagram of SU(N) gauge-fermion theories as a function of the number of flavors and colors to the region in which asymptotic freedom is lost. We argue, using large Nf results, for the existence of an ultraviolet interacting fixed point at a sufficiently large number of flavors opening up to a second ultraviolet conformal window in the number of flavors vs colors phase diagram. We first review the state-of-the-art for the large Nf beta function and then estimate the lower boundary of the ultraviolet window. The theories belonging to this new region are examples of safe non-Abelian quantum electrodynamics, termed here safe QCD. Therefore, according to Wilson, they are fundamental. An important critical quantity is the fermion mass anomalous dimension at the ultraviolet fixed point that we determine at leading order in 1/Nf. We discover that its value is comfortably below the bootstrap bound. We also investigate the Abelian case and find that at the potential ultraviolet fixed point the related fermion mass anomalous dimension has a singular behavior suggesting that a more careful investigation of its ultimate fate is needed.We extend the phase diagram of SU(N) gauge-fermion theories as function of number of flavours and colours to the region in which asymptotic freedom is lost. We argue, using large $N_f$ results, for the existence of an ultraviolet interacting fixed point at sufficiently large number of flavours opening up to a second ultraviolet conformal window in the number of flavours vs colours phase diagram. We first review the state-of-the-art for the large $N_f$ beta function and then estimate the lower boundary of the ultraviolet window. The theories belonging to this new region are examples of safe non-abelian quantum electro dynamics, termed here {\it safe QCD}. Therefore, according to Wilson, they are fundamental. An important critical quantity is the fermion mass anomalous dimension at the ultraviolet fixed point that we determine at leading order in $1/N_f$. We discover that its value is comfortably below the bootstrap bound. We also investigate the abelian case and find that at the potential ultraviolet fixed point the related fermion mass anomalous dimension has a singular behaviour suggesting that a more careful investigation of its ultimate fate is needed.CP3-ORIGINS-2017-033CERN-TH-2017-187arXiv:1709.02354oai:cds.cern.ch:22828162017-09-07
spellingShingle hep-th
Particle Physics - Theory
hep-lat
Particle Physics - Lattice
hep-ph
Particle Physics - Phenomenology
Antipin, Oleg
Sannino, Francesco
Conformal Window 2.0: The Large $N_f$ Safe Story
title Conformal Window 2.0: The Large $N_f$ Safe Story
title_full Conformal Window 2.0: The Large $N_f$ Safe Story
title_fullStr Conformal Window 2.0: The Large $N_f$ Safe Story
title_full_unstemmed Conformal Window 2.0: The Large $N_f$ Safe Story
title_short Conformal Window 2.0: The Large $N_f$ Safe Story
title_sort conformal window 2.0: the large $n_f$ safe story
topic hep-th
Particle Physics - Theory
hep-lat
Particle Physics - Lattice
hep-ph
Particle Physics - Phenomenology
url https://dx.doi.org/10.1103/PhysRevD.97.116007
http://cds.cern.ch/record/2282816
work_keys_str_mv AT antipinoleg conformalwindow20thelargenfsafestory
AT sanninofrancesco conformalwindow20thelargenfsafestory