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QCD with an Infrared Fixed Point -- Pion Sector

The possibility that gauge theories with chiral symmetry breaking below the conformal window exhibit an infrared fixed point is explored. With this assumption three aspects of pion physics are reproduced if the the quark mass anomalous dimension at the infrared fixed point is $\gamma_* = 1$: First,...

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Autor principal: Zwicky, Roman
Lenguaje:eng
Publicado: 2023
Materias:
Acceso en línea:http://cds.cern.ch/record/2861813
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author Zwicky, Roman
author_facet Zwicky, Roman
author_sort Zwicky, Roman
collection CERN
description The possibility that gauge theories with chiral symmetry breaking below the conformal window exhibit an infrared fixed point is explored. With this assumption three aspects of pion physics are reproduced if the the quark mass anomalous dimension at the infrared fixed point is $\gamma_* = 1$: First, by matching the long-distance scalar adjoint correlation function. Second, by perturbing the fixed point by a small quark mass, the $m_q$-dependence of the pion mass is reproduced by renormalisation group arguments. Third, consistency of the trace anomaly and the Feynman-Hellmann theorem, for small $m_q$, imply the same result once more. This suggests the following picture for the conformal window: close to its upper boundary $\gamma_*$ is zero and grows as the number of fermions is reduced until its lower boundary $\gamma_*=1$ is reached, where chiral symmetry breaking sets in. Below, the strongly coupled gauge theory with $\gamma_*=1$ is infrared dual to the free theory of pions. A possible dilaton sector of the scenario will be addressed in a companion paper.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2023
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spelling cern-28618132023-09-01T04:27:51Zhttp://cds.cern.ch/record/2861813engZwicky, RomanQCD with an Infrared Fixed Point -- Pion Sectorhep-thParticle Physics - Theoryhep-latParticle Physics - Latticehep-phParticle Physics - PhenomenologyThe possibility that gauge theories with chiral symmetry breaking below the conformal window exhibit an infrared fixed point is explored. With this assumption three aspects of pion physics are reproduced if the the quark mass anomalous dimension at the infrared fixed point is $\gamma_* = 1$: First, by matching the long-distance scalar adjoint correlation function. Second, by perturbing the fixed point by a small quark mass, the $m_q$-dependence of the pion mass is reproduced by renormalisation group arguments. Third, consistency of the trace anomaly and the Feynman-Hellmann theorem, for small $m_q$, imply the same result once more. This suggests the following picture for the conformal window: close to its upper boundary $\gamma_*$ is zero and grows as the number of fermions is reduced until its lower boundary $\gamma_*=1$ is reached, where chiral symmetry breaking sets in. Below, the strongly coupled gauge theory with $\gamma_*=1$ is infrared dual to the free theory of pions. A possible dilaton sector of the scenario will be addressed in a companion paper.arXiv:2306.06752CERN-TH-2023-100oai:cds.cern.ch:28618132023-06-11
spellingShingle hep-th
Particle Physics - Theory
hep-lat
Particle Physics - Lattice
hep-ph
Particle Physics - Phenomenology
Zwicky, Roman
QCD with an Infrared Fixed Point -- Pion Sector
title QCD with an Infrared Fixed Point -- Pion Sector
title_full QCD with an Infrared Fixed Point -- Pion Sector
title_fullStr QCD with an Infrared Fixed Point -- Pion Sector
title_full_unstemmed QCD with an Infrared Fixed Point -- Pion Sector
title_short QCD with an Infrared Fixed Point -- Pion Sector
title_sort qcd with an infrared fixed point -- pion sector
topic hep-th
Particle Physics - Theory
hep-lat
Particle Physics - Lattice
hep-ph
Particle Physics - Phenomenology
url http://cds.cern.ch/record/2861813
work_keys_str_mv AT zwickyroman qcdwithaninfraredfixedpointpionsector