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The θ-angle and axion physics of two-color QCD at fixed baryon charge

We analyze the impact of the θ-angle and axion dynamics for two-color (in fact any Sp(2N )) QCD at nonzero baryon charge and as a function of the number of matter fields on the vacuum properties, the pattern of chiral symmetry breaking as well as the spectrum of the theory. We show that the vacuum a...

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Autores principales: Bersini, Jahmall, D'Alise, Alessandra, Sannino, Francesco, Torres, Matías
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP11(2022)080
http://cds.cern.ch/record/2848179
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author Bersini, Jahmall
D'Alise, Alessandra
Sannino, Francesco
Torres, Matías
author_facet Bersini, Jahmall
D'Alise, Alessandra
Sannino, Francesco
Torres, Matías
author_sort Bersini, Jahmall
collection CERN
description We analyze the impact of the θ-angle and axion dynamics for two-color (in fact any Sp(2N )) QCD at nonzero baryon charge and as a function of the number of matter fields on the vacuum properties, the pattern of chiral symmetry breaking as well as the spectrum of the theory. We show that the vacuum acquires a rich structure when the underlying CP violating topological operator is added to the theory. We discover novel phases and analyse the order of their transitions characterizing the dynamics of the odd and even number of flavours. We further determine the critical chemical potential as function of the θ angle separating the normal from the superfluid phase of the theory. Our results will guide numerical simulations and novel tests of the model’s dynamics. The results are also expected to better inform phenomenological applications of the model ranging from composite Higgs physics to strongly interacting massive dark matter models featuring number changing interactions. In the companion work [1] we repurpose and upgrade the approach to determine the impact of the θ-angle and axion physics on non-perturbative near conformal dynamics related to the fixed baryon charge sector.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
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spelling cern-28481792023-08-10T09:58:46Zdoi:10.1007/JHEP11(2022)080http://cds.cern.ch/record/2848179engBersini, JahmallD'Alise, AlessandraSannino, FrancescoTorres, MatíasThe θ-angle and axion physics of two-color QCD at fixed baryon chargehep-phParticle Physics - Phenomenologyhep-latParticle Physics - Latticehep-thParticle Physics - TheoryWe analyze the impact of the θ-angle and axion dynamics for two-color (in fact any Sp(2N )) QCD at nonzero baryon charge and as a function of the number of matter fields on the vacuum properties, the pattern of chiral symmetry breaking as well as the spectrum of the theory. We show that the vacuum acquires a rich structure when the underlying CP violating topological operator is added to the theory. We discover novel phases and analyse the order of their transitions characterizing the dynamics of the odd and even number of flavours. We further determine the critical chemical potential as function of the θ angle separating the normal from the superfluid phase of the theory. Our results will guide numerical simulations and novel tests of the model’s dynamics. The results are also expected to better inform phenomenological applications of the model ranging from composite Higgs physics to strongly interacting massive dark matter models featuring number changing interactions. In the companion work [1] we repurpose and upgrade the approach to determine the impact of the θ-angle and axion physics on non-perturbative near conformal dynamics related to the fixed baryon charge sector.We analyze the impact of the $\theta$-angle and axion dynamics for two-color (in fact any $Sp(2N)$) QCD at nonzero baryon charge and as a function of the number of matter fields on the vacuum properties, the pattern of chiral symmetry breaking as well as the spectrum of the theory. We show that the vacuum acquires a rich structure when the underlying $CP$ violating topological operator is added to the theory. We discover novel phases and analyse the order of their transitions characterizing the dynamics of the odd and even number of flavours. We further determine the critical chemical potential as function of the $\theta$ angle separating the normal from the superfluid phase of the theory. Our results will guide numerical simulations and novel tests of the model's dynamics. The results are also expected to better inform phenomenological applications of the model ranging from composite Higgs physics to strongly interacting massive dark matter models featuring number changing interactions. In the companion work \cite{PartII} we repurpose and upgrade the approach to determine the impact of the $\theta$-angle and axion physics on non-perturbative near conformal dynamics related to the fixed baryon charge sector.arXiv:2208.09226RBI-ThPhys-2022-31oai:cds.cern.ch:28481792022-08-19
spellingShingle hep-ph
Particle Physics - Phenomenology
hep-lat
Particle Physics - Lattice
hep-th
Particle Physics - Theory
Bersini, Jahmall
D'Alise, Alessandra
Sannino, Francesco
Torres, Matías
The θ-angle and axion physics of two-color QCD at fixed baryon charge
title The θ-angle and axion physics of two-color QCD at fixed baryon charge
title_full The θ-angle and axion physics of two-color QCD at fixed baryon charge
title_fullStr The θ-angle and axion physics of two-color QCD at fixed baryon charge
title_full_unstemmed The θ-angle and axion physics of two-color QCD at fixed baryon charge
title_short The θ-angle and axion physics of two-color QCD at fixed baryon charge
title_sort θ-angle and axion physics of two-color qcd at fixed baryon charge
topic hep-ph
Particle Physics - Phenomenology
hep-lat
Particle Physics - Lattice
hep-th
Particle Physics - Theory
url https://dx.doi.org/10.1007/JHEP11(2022)080
http://cds.cern.ch/record/2848179
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