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ALPtraum: ALP production in proton beam dump experiments

With their high beam energy and intensity, existing and near-future proton beam dumps provide an excellent opportunity to search for new very weakly coupled particles in the MeV to GeV mass range. One particularly interesting example is a so-called axion-like particle (ALP), i.e. a pseudoscalar coup...

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Autores principales: Döbrich, Babette, Jaeckel, Joerg, Kahlhoefer, Felix, Ringwald, Andreas, Schmidt-Hoberg, Kai
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP02(2016)018
http://cds.cern.ch/record/2112501
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author Döbrich, Babette
Jaeckel, Joerg
Kahlhoefer, Felix
Ringwald, Andreas
Schmidt-Hoberg, Kai
author_facet Döbrich, Babette
Jaeckel, Joerg
Kahlhoefer, Felix
Ringwald, Andreas
Schmidt-Hoberg, Kai
author_sort Döbrich, Babette
collection CERN
description With their high beam energy and intensity, existing and near-future proton beam dumps provide an excellent opportunity to search for new very weakly coupled particles in the MeV to GeV mass range. One particularly interesting example is a so-called axion-like particle (ALP), i.e. a pseudoscalar coupled to two photons. The challenge in proton beam dumps is to reliably calculate the production of the new particles from the interactions of two composite objects, the proton and the target atoms. In this work we argue that Primakoff production of ALPs proceeds in a momentum range where production rates and angular distributions can be determined to sufficient precision using simple electromagnetic form factors. Reanalysing past proton beam dump experiments for this production channel, we derive novel constraints on the parameter space for ALPs. We show that the NA62 experiment at CERN could probe unexplored parameter space by running in 'dump mode' for a few days and discuss opportunities for future experiments such as SHiP.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2015
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spelling cern-21125012022-08-10T12:37:20Zdoi:10.1007/JHEP02(2016)018http://cds.cern.ch/record/2112501engDöbrich, BabetteJaeckel, JoergKahlhoefer, FelixRingwald, AndreasSchmidt-Hoberg, KaiALPtraum: ALP production in proton beam dump experimentsParticle Physics - PhenomenologyWith their high beam energy and intensity, existing and near-future proton beam dumps provide an excellent opportunity to search for new very weakly coupled particles in the MeV to GeV mass range. One particularly interesting example is a so-called axion-like particle (ALP), i.e. a pseudoscalar coupled to two photons. The challenge in proton beam dumps is to reliably calculate the production of the new particles from the interactions of two composite objects, the proton and the target atoms. In this work we argue that Primakoff production of ALPs proceeds in a momentum range where production rates and angular distributions can be determined to sufficient precision using simple electromagnetic form factors. Reanalysing past proton beam dump experiments for this production channel, we derive novel constraints on the parameter space for ALPs. We show that the NA62 experiment at CERN could probe unexplored parameter space by running in 'dump mode' for a few days and discuss opportunities for future experiments such as SHiP.With their high beam energy and intensity, existing and near-future proton beam dumps provide an excellent opportunity to search for new very weakly coupled particles in the MeV to GeV mass range. One particularly interesting example is a so-called axion-like particle (ALP), i.e. a pseudoscalar coupled to two photons. The challenge in proton beam dumps is to reliably calculate the production of the new particles from the interactions of two composite objects, the proton and the target atoms. In this work we argue that Primakoff production of ALPs proceeds in a momentum range where production rates and angular distributions can be determined to sufficient precision using simple electromagnetic form factors. Reanalysing past proton beam dump experiments for this production channel, we derive novel constraints on the parameter space for ALPs. We show that the NA62 experiment at CERN could probe unexplored parameter space by running in ‘dump mode’ for a few days and discuss opportunities for future experiments such as SHiP.With their high beam energy and intensity, existing and near-future proton beam dumps provide an excellent opportunity to search for new very weakly coupled particles in the MeV to GeV mass range. One particularly interesting example is a so-called axion-like particle (ALP), i.e. a pseudoscalar coupled to two photons. The challenge in proton beam dumps is to reliably calculate the production of the new particles from the interactions of two composite objects, the proton and the target atoms. In this work we argue that Primakoff production of ALPs proceeds in a momentum range where production rates and angular distributions can be determined to sufficient precision using simple electromagnetic form factors. Reanalysing past proton beam dump experiments for this production channel, we derive novel constraints on the parameter space for ALPs. We show that the NA62 experiment at CERN could probe unexplored parameter space by running in 'dump mode' for a few days and discuss opportunities for future experiments such as SHiP.arXiv:1512.03069CERN-PH-TH-2015-293DESY-15-237CERN-PH-TH-2015-293DESY 15-237oai:cds.cern.ch:21125012015-12-09
spellingShingle Particle Physics - Phenomenology
Döbrich, Babette
Jaeckel, Joerg
Kahlhoefer, Felix
Ringwald, Andreas
Schmidt-Hoberg, Kai
ALPtraum: ALP production in proton beam dump experiments
title ALPtraum: ALP production in proton beam dump experiments
title_full ALPtraum: ALP production in proton beam dump experiments
title_fullStr ALPtraum: ALP production in proton beam dump experiments
title_full_unstemmed ALPtraum: ALP production in proton beam dump experiments
title_short ALPtraum: ALP production in proton beam dump experiments
title_sort alptraum: alp production in proton beam dump experiments
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1007/JHEP02(2016)018
http://cds.cern.ch/record/2112501
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AT kahlhoeferfelix alptraumalpproductioninprotonbeamdumpexperiments
AT ringwaldandreas alptraumalpproductioninprotonbeamdumpexperiments
AT schmidthobergkai alptraumalpproductioninprotonbeamdumpexperiments