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Constraints on the coupling with photons of heavy axion-like-particles from Globular Clusters

We update the globular cluster bound on massive ($m_a$ up to a few 100 keV) axion-like particles (ALP) interacting with photons. The production of such particles in the stellar core is dominated by the Primakoff $\gamma + Ze\to Ze +a$ and by the photon coalescence process $\gamma+\gamma\to a$. The l...

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Autores principales: Carenza, Pierluca, Straniero, Oscar, Döbrich, Babette, Giannotti, Maurizio, Lucente, Giuseppe, Mirizzi, Alessandro
Lenguaje:eng
Publicado: 2020
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.physletb.2020.135709
http://cds.cern.ch/record/2724551
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author Carenza, Pierluca
Straniero, Oscar
Döbrich, Babette
Giannotti, Maurizio
Lucente, Giuseppe
Mirizzi, Alessandro
author_facet Carenza, Pierluca
Straniero, Oscar
Döbrich, Babette
Giannotti, Maurizio
Lucente, Giuseppe
Mirizzi, Alessandro
author_sort Carenza, Pierluca
collection CERN
description We update the globular cluster bound on massive ($m_a$ up to a few 100 keV) axion-like particles (ALP) interacting with photons. The production of such particles in the stellar core is dominated by the Primakoff $\gamma + Ze\to Ze +a$ and by the photon coalescence process $\gamma+\gamma\to a$. The latter, which is predominant at high masses, was not included in previous estimations. Furthermore, we account for the possibility that axions decay inside the stellar core, a non-negligible effect at the masses and couplings we are considering here. Consequently, our result modifies considerably the previous constraint, especially for $m_a \gtrsim 50$ keV. The combined constraints from Globular Cluster stars, SN 1987A, and beam-dump experiments leave a small triangularly shaped region open in the parameter space around $m_a \sim 0.5-1\,$ MeV and $g_{a\gamma} \sim 10^{-5}$ GeV$^{-1}$. This is informally known as the ALP "cosmological triangle" since it can be excluded only using standard cosmological arguments. As we shall mention, however, there are viable cosmological models that are compatible with axion-like particles with parameters in such region. We also discuss possibilities to explore the cosmological triangle experimentally in upcoming accelerator experiments.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2020
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spelling cern-27245512021-05-04T07:18:08Zdoi:10.1016/j.physletb.2020.135709http://cds.cern.ch/record/2724551engCarenza, PierlucaStraniero, OscarDöbrich, BabetteGiannotti, MaurizioLucente, GiuseppeMirizzi, AlessandroConstraints on the coupling with photons of heavy axion-like-particles from Globular Clustershep-exParticle Physics - Experimentastro-ph.SRAstrophysics and Astronomyhep-phParticle Physics - PhenomenologyWe update the globular cluster bound on massive ($m_a$ up to a few 100 keV) axion-like particles (ALP) interacting with photons. The production of such particles in the stellar core is dominated by the Primakoff $\gamma + Ze\to Ze +a$ and by the photon coalescence process $\gamma+\gamma\to a$. The latter, which is predominant at high masses, was not included in previous estimations. Furthermore, we account for the possibility that axions decay inside the stellar core, a non-negligible effect at the masses and couplings we are considering here. Consequently, our result modifies considerably the previous constraint, especially for $m_a \gtrsim 50$ keV. The combined constraints from Globular Cluster stars, SN 1987A, and beam-dump experiments leave a small triangularly shaped region open in the parameter space around $m_a \sim 0.5-1\,$ MeV and $g_{a\gamma} \sim 10^{-5}$ GeV$^{-1}$. This is informally known as the ALP "cosmological triangle" since it can be excluded only using standard cosmological arguments. As we shall mention, however, there are viable cosmological models that are compatible with axion-like particles with parameters in such region. We also discuss possibilities to explore the cosmological triangle experimentally in upcoming accelerator experiments.We update the globular cluster bound on massive ( ma up to a few 100 keV) axion-like particles (ALP) interacting with photons. The production of such particles in the stellar core is dominated by the Primakoff γ+Ze→Ze+a and by the photon coalescence process γ+γ→a . The latter, which is predominant at high masses, was not included in previous estimations. Furthermore, we account for the possibility that axions decay inside the stellar core, a non-negligible effect at the masses and couplings we are considering here. Consequently, our result modifies considerably the previous constraint, especially for ma≳50keV . The combined constraints from Globular Cluster stars, SN 1987A, and beam-dump experiments leave a small triangularly shaped region open in the parameter space around ma∼0.5−1MeV and gaγ∼10−5GeV−1 . This is informally known as the ALP “cosmological triangle” since it can be excluded only using standard cosmological arguments. As we shall mention, however, there are viable cosmological models that are compatible with axion-like particles with parameters in such region. We also discuss possibilities to explore the cosmological triangle experimentally in upcoming accelerator experiments.arXiv:2004.08399oai:cds.cern.ch:27245512020-04-17
spellingShingle hep-ex
Particle Physics - Experiment
astro-ph.SR
Astrophysics and Astronomy
hep-ph
Particle Physics - Phenomenology
Carenza, Pierluca
Straniero, Oscar
Döbrich, Babette
Giannotti, Maurizio
Lucente, Giuseppe
Mirizzi, Alessandro
Constraints on the coupling with photons of heavy axion-like-particles from Globular Clusters
title Constraints on the coupling with photons of heavy axion-like-particles from Globular Clusters
title_full Constraints on the coupling with photons of heavy axion-like-particles from Globular Clusters
title_fullStr Constraints on the coupling with photons of heavy axion-like-particles from Globular Clusters
title_full_unstemmed Constraints on the coupling with photons of heavy axion-like-particles from Globular Clusters
title_short Constraints on the coupling with photons of heavy axion-like-particles from Globular Clusters
title_sort constraints on the coupling with photons of heavy axion-like-particles from globular clusters
topic hep-ex
Particle Physics - Experiment
astro-ph.SR
Astrophysics and Astronomy
hep-ph
Particle Physics - Phenomenology
url https://dx.doi.org/10.1016/j.physletb.2020.135709
http://cds.cern.ch/record/2724551
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