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Measuring neutrino mass with radioactive ions in a storage ring

We propose a method to measure the neutrino mass kinematically using beams of ions which undergo beta decay. The idea is to tune the ion beam momentum so that in most decays, the electron is forward moving with respect to the beam, and only in decays near the endpoint is the electron moving backward...

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Detalles Bibliográficos
Autores principales: Lindroos, Mats, McElrath, Bob, Orme, Christopher, Schwetz, Thomas
Lenguaje:eng
Publicado: 2009
Materias:
Acceso en línea:https://dx.doi.org/10.1140/epjc/s10052-009-1168-y
http://cds.cern.ch/record/1171365
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author Lindroos, Mats
McElrath, Bob
Orme, Christopher
Schwetz, Thomas
author_facet Lindroos, Mats
McElrath, Bob
Orme, Christopher
Schwetz, Thomas
author_sort Lindroos, Mats
collection CERN
description We propose a method to measure the neutrino mass kinematically using beams of ions which undergo beta decay. The idea is to tune the ion beam momentum so that in most decays, the electron is forward moving with respect to the beam, and only in decays near the endpoint is the electron moving backwards. Then, by counting the backward moving electrons one can observe the effect of neutrino mass on the beta spectrum close to the endpoint. In order to reach sensitivities for $m_\nu < 0.2$ eV, it is necessary to control the ion momentum with a precision better than $\delta p/p < 10^{-5}$, identify suitable nuclei with low Q-values (in the few to ten keV range), and one must be able to observe at least O($10^{18}$) decays.
id cern-1171365
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2009
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spelling cern-11713652022-03-31T20:59:07Zdoi:10.1140/epjc/s10052-009-1168-yhttp://cds.cern.ch/record/1171365engLindroos, MatsMcElrath, BobOrme, ChristopherSchwetz, ThomasMeasuring neutrino mass with radioactive ions in a storage ringParticle Physics - PhenomenologyWe propose a method to measure the neutrino mass kinematically using beams of ions which undergo beta decay. The idea is to tune the ion beam momentum so that in most decays, the electron is forward moving with respect to the beam, and only in decays near the endpoint is the electron moving backwards. Then, by counting the backward moving electrons one can observe the effect of neutrino mass on the beta spectrum close to the endpoint. In order to reach sensitivities for $m_\nu < 0.2$ eV, it is necessary to control the ion momentum with a precision better than $\delta p/p < 10^{-5}$, identify suitable nuclei with low Q-values (in the few to ten keV range), and one must be able to observe at least O($10^{18}$) decays.We propose a method to measure the neutrino mass kinematically using beams of ions which undergo beta decay. The idea is to tune the ion beam momentum so that in most decays, the electron is forward moving with respect to the beam, and only in decays near the endpoint is the electron moving backwards. Then, by counting the backward moving electrons one can observe the effect of neutrino mass on the beta spectrum close to the endpoint. In order to reach sensitivities for $m_\nu < 0.2$ eV, it is necessary to control the ion momentum with a precision better than $\delta p/p < 10^{-5}$, identify suitable nuclei with low Q-values (in the few to ten keV range), and one must be able to observe at least O($10^{18}$) decays.arXiv:0904.1089IPPP-09-27DCPT-09-54IPPP-09-27DCPT-09-54oai:cds.cern.ch:11713652009-04-08
spellingShingle Particle Physics - Phenomenology
Lindroos, Mats
McElrath, Bob
Orme, Christopher
Schwetz, Thomas
Measuring neutrino mass with radioactive ions in a storage ring
title Measuring neutrino mass with radioactive ions in a storage ring
title_full Measuring neutrino mass with radioactive ions in a storage ring
title_fullStr Measuring neutrino mass with radioactive ions in a storage ring
title_full_unstemmed Measuring neutrino mass with radioactive ions in a storage ring
title_short Measuring neutrino mass with radioactive ions in a storage ring
title_sort measuring neutrino mass with radioactive ions in a storage ring
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1140/epjc/s10052-009-1168-y
http://cds.cern.ch/record/1171365
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