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Limitations in the use of Barrier Buckets in a Beta Beam Decay Ring

Beta Beam, the concept of letting accelerated radioactive ions generate a pure and intense (anti-) neutrino beam by beta decay, is the base of one of the pro- posed next generation neutrino oscillation facilities, necessary for a complete study of the neutrino oscillation parameter space. The first...

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Detalles Bibliográficos
Autores principales: Hansen, C, Wildner, E, Fernandez Martinez, E F
Lenguaje:eng
Publicado: CERN 2010
Materias:
Acceso en línea:https://dx.doi.org/10.5170/CERN-2010-003.295
http://cds.cern.ch/record/1977423
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author Hansen, C
Wildner, E
Fernandez Martinez, E F
author_facet Hansen, C
Wildner, E
Fernandez Martinez, E F
author_sort Hansen, C
collection CERN
description Beta Beam, the concept of letting accelerated radioactive ions generate a pure and intense (anti-) neutrino beam by beta decay, is the base of one of the pro- posed next generation neutrino oscillation facilities, necessary for a complete study of the neutrino oscillation parameter space. The first CERN based sce- nario, using 18Ne and 6He as !e and ¯!e emitters respectively, has shown a shortfall in 18Ne production. We have now entered the era of the studies of an alternative CERN based baseline. This alternative investigates how the ions 8B and 8Li can be produced in high quantities in a ”Production Ring”, accel- erated and then accumulated in a ”Decay Ring”. The idea of an alternative RF scheme for the Decay Ring, to use RF barriers to collect all ions in one ”Bar- rier Bucket”, has been tested. Longitudinal phase space simulations show that with the Barrier Bucket method it is unfeasible to optimize between ion inten- sity in the bucket and the duty cycle the bucket occupy. Therefore the prior RF scheme, that proved to accomplish a duty cycle that followed the requirements, will have to be investigated also for the new ions.
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institution Organización Europea para la Investigación Nuclear
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spelling cern-19774232022-08-10T20:27:21Zdoi:10.5170/CERN-2010-003.295http://cds.cern.ch/record/1977423engHansen, CWildner, EFernandez Martinez, E FLimitations in the use of Barrier Buckets in a Beta Beam Decay RingNuclear Physics - ExperimentBeta Beam, the concept of letting accelerated radioactive ions generate a pure and intense (anti-) neutrino beam by beta decay, is the base of one of the pro- posed next generation neutrino oscillation facilities, necessary for a complete study of the neutrino oscillation parameter space. The first CERN based sce- nario, using 18Ne and 6He as !e and ¯!e emitters respectively, has shown a shortfall in 18Ne production. We have now entered the era of the studies of an alternative CERN based baseline. This alternative investigates how the ions 8B and 8Li can be produced in high quantities in a ”Production Ring”, accel- erated and then accumulated in a ”Decay Ring”. The idea of an alternative RF scheme for the Decay Ring, to use RF barriers to collect all ions in one ”Bar- rier Bucket”, has been tested. Longitudinal phase space simulations show that with the Barrier Bucket method it is unfeasible to optimize between ion inten- sity in the bucket and the duty cycle the bucket occupy. Therefore the prior RF scheme, that proved to accomplish a duty cycle that followed the requirements, will have to be investigated also for the new ions.CERNoai:cds.cern.ch:19774232010
spellingShingle Nuclear Physics - Experiment
Hansen, C
Wildner, E
Fernandez Martinez, E F
Limitations in the use of Barrier Buckets in a Beta Beam Decay Ring
title Limitations in the use of Barrier Buckets in a Beta Beam Decay Ring
title_full Limitations in the use of Barrier Buckets in a Beta Beam Decay Ring
title_fullStr Limitations in the use of Barrier Buckets in a Beta Beam Decay Ring
title_full_unstemmed Limitations in the use of Barrier Buckets in a Beta Beam Decay Ring
title_short Limitations in the use of Barrier Buckets in a Beta Beam Decay Ring
title_sort limitations in the use of barrier buckets in a beta beam decay ring
topic Nuclear Physics - Experiment
url https://dx.doi.org/10.5170/CERN-2010-003.295
http://cds.cern.ch/record/1977423
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