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A low energy accumulation stage for a beta-beam facility

The EU supported EURISOL Design Study encompasses a beta-beam facility for neutrino physics. Intense electron (anti-)neutrino beams are in such a machine generated through the decay of radioactive ions in a high energy storage ring. The two main candidate isotopes for the generation of a neutrino an...

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Detalles Bibliográficos
Autores principales: Källberg, Anders, Simonsson, Ansgar, Lindroos, Mats
Lenguaje:eng
Publicado: 2006
Materias:
Acceso en línea:http://cds.cern.ch/record/971883
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author Källberg, Anders
Simonsson, Ansgar
Lindroos, Mats
author_facet Källberg, Anders
Simonsson, Ansgar
Lindroos, Mats
author_sort Källberg, Anders
collection CERN
description The EU supported EURISOL Design Study encompasses a beta-beam facility for neutrino physics. Intense electron (anti-)neutrino beams are in such a machine generated through the decay of radioactive ions in a high energy storage ring. The two main candidate isotopes for the generation of a neutrino and an antineutrino beam are 6He and 18Ne. The intensities required are hard to reach, in particular for the neon case. A possible solution to increase the intensity is to use an accumulator ring with an electron cooler. Critical parameters such as cooling times and current limitations due to space charge and tune shifts are presently being optimized. We will in this presentation give an overview of the low energy accumulation stage and review recent work on this option.
id cern-971883
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2006
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spelling cern-9718832022-08-17T13:35:22Zhttp://cds.cern.ch/record/971883engKällberg, AndersSimonsson, AnsgarLindroos, MatsA low energy accumulation stage for a beta-beam facilityAccelerators and Storage Rings12: TASK 12The EU supported EURISOL Design Study encompasses a beta-beam facility for neutrino physics. Intense electron (anti-)neutrino beams are in such a machine generated through the decay of radioactive ions in a high energy storage ring. The two main candidate isotopes for the generation of a neutrino and an antineutrino beam are 6He and 18Ne. The intensities required are hard to reach, in particular for the neon case. A possible solution to increase the intensity is to use an accumulator ring with an electron cooler. Critical parameters such as cooling times and current limitations due to space charge and tune shifts are presently being optimized. We will in this presentation give an overview of the low energy accumulation stage and review recent work on this option.CERN-AB-2006-050EURISOL-12-23-2006-0006oai:cds.cern.ch:9718832006-07-13
spellingShingle Accelerators and Storage Rings
12: TASK 12
Källberg, Anders
Simonsson, Ansgar
Lindroos, Mats
A low energy accumulation stage for a beta-beam facility
title A low energy accumulation stage for a beta-beam facility
title_full A low energy accumulation stage for a beta-beam facility
title_fullStr A low energy accumulation stage for a beta-beam facility
title_full_unstemmed A low energy accumulation stage for a beta-beam facility
title_short A low energy accumulation stage for a beta-beam facility
title_sort low energy accumulation stage for a beta-beam facility
topic Accelerators and Storage Rings
12: TASK 12
url http://cds.cern.ch/record/971883
work_keys_str_mv AT kallberganders alowenergyaccumulationstageforabetabeamfacility
AT simonssonansgar alowenergyaccumulationstageforabetabeamfacility
AT lindroosmats alowenergyaccumulationstageforabetabeamfacility
AT kallberganders lowenergyaccumulationstageforabetabeamfacility
AT simonssonansgar lowenergyaccumulationstageforabetabeamfacility
AT lindroosmats lowenergyaccumulationstageforabetabeamfacility