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Boron ion beam production with the supernanogan ECR ion source for the CERN BIO-LEIR facility

To deliver B3+ ions for medical research the compounds decaborane and m-carborane were tested using the metal ions from volatile compounds (MIVOC) method with the Supernanogan 14.5 GHz ECR ion source. Using decaborane the source delivered less than 10 A intensity of B3+ and after operation large dep...

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Detalles Bibliográficos
Autores principales: Stafford-Haworth, J, Küchler, D, Scrivens, R, Toivanen, V, Röhrich, J
Lenguaje:eng
Publicado: 2014
Materias:
Acceso en línea:http://cds.cern.ch/record/1950527
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author Stafford-Haworth, J
Küchler, D
Scrivens, R
Toivanen, V
Röhrich, J
author_facet Stafford-Haworth, J
Küchler, D
Scrivens, R
Toivanen, V
Röhrich, J
author_sort Stafford-Haworth, J
collection CERN
description To deliver B3+ ions for medical research the compounds decaborane and m-carborane were tested using the metal ions from volatile compounds (MIVOC) method with the Supernanogan 14.5 GHz ECR ion source. Using decaborane the source delivered less than 10 A intensity of B3+ and after operation large deposits of material were found inside the source. Using m-carborane 50 A of B3+ were delivered without support gas. For m-carborane, helium and oxygen support gasses were also tested, and the effects of different source tuning parameters are discussed. The average consumption of m-carborane was 0:1 mg/Ah over all operation.
id cern-1950527
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2014
record_format invenio
spelling cern-19505272019-09-30T06:29:59Zhttp://cds.cern.ch/record/1950527engStafford-Haworth, JKüchler, DScrivens, RToivanen, VRöhrich, JBoron ion beam production with the supernanogan ECR ion source for the CERN BIO-LEIR facilityAccelerators and Storage RingsTo deliver B3+ ions for medical research the compounds decaborane and m-carborane were tested using the metal ions from volatile compounds (MIVOC) method with the Supernanogan 14.5 GHz ECR ion source. Using decaborane the source delivered less than 10 A intensity of B3+ and after operation large deposits of material were found inside the source. Using m-carborane 50 A of B3+ were delivered without support gas. For m-carborane, helium and oxygen support gasses were also tested, and the effects of different source tuning parameters are discussed. The average consumption of m-carborane was 0:1 mg/Ah over all operation.CERN-ACC-2014-0206oai:cds.cern.ch:19505272014-08-24
spellingShingle Accelerators and Storage Rings
Stafford-Haworth, J
Küchler, D
Scrivens, R
Toivanen, V
Röhrich, J
Boron ion beam production with the supernanogan ECR ion source for the CERN BIO-LEIR facility
title Boron ion beam production with the supernanogan ECR ion source for the CERN BIO-LEIR facility
title_full Boron ion beam production with the supernanogan ECR ion source for the CERN BIO-LEIR facility
title_fullStr Boron ion beam production with the supernanogan ECR ion source for the CERN BIO-LEIR facility
title_full_unstemmed Boron ion beam production with the supernanogan ECR ion source for the CERN BIO-LEIR facility
title_short Boron ion beam production with the supernanogan ECR ion source for the CERN BIO-LEIR facility
title_sort boron ion beam production with the supernanogan ecr ion source for the cern bio-leir facility
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1950527
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AT kuchlerd boronionbeamproductionwiththesupernanoganecrionsourceforthecernbioleirfacility
AT scrivensr boronionbeamproductionwiththesupernanoganecrionsourceforthecernbioleirfacility
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