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10 GHz ECRIS for Warsaw Cyclotron

Cusp type, 10 GHz ECRIS has been built and tested earlier. For obtaining intensive beams, more relevant for cyclotron, cusp geometry has been replaced by hexapole. Discharge chamber (stainless steel, 50 mm diameter, 250 mm long) is an extension of a coaxial line, feeding RF (9,6 GHz, up to 200 W) to...

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Detalles Bibliográficos
Autores principales: Sudlitz, K, Kulczycka, E
Lenguaje:eng
Publicado: 1999
Materias:
Acceso en línea:http://cds.cern.ch/record/427316
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author Sudlitz, K
Kulczycka, E
author_facet Sudlitz, K
Kulczycka, E
author_sort Sudlitz, K
collection CERN
description Cusp type, 10 GHz ECRIS has been built and tested earlier. For obtaining intensive beams, more relevant for cyclotron, cusp geometry has been replaced by hexapole. Discharge chamber (stainless steel, 50 mm diameter, 250 mm long) is an extension of a coaxial line, feeding RF (9,6 GHz, up to 200 W) to the plasma. The NdFeB hexapole (0,52 T on the surface) has been used. The axial magnetic field is created by water cooled coils. The axial injection line dedicated to K160 isochronous heavy ion cyclotron has been constructed. The line consists of Glaser lenses, double focusing magnet, solenoid and mirror type inflector. The system provides sufficient transmission of the beam from ECR ion source to the firsts orbits of the cyclotron for m/q ranging from 7 to 2. After successful initial tests which were done in July 1997 the ECRIS serves as an external source for Warsaw Cyclotron.
id cern-427316
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1999
record_format invenio
spelling cern-4273162019-09-30T06:29:59Zhttp://cds.cern.ch/record/427316engSudlitz, KKulczycka, E10 GHz ECRIS for Warsaw CyclotronAccelerators and Storage RingsCusp type, 10 GHz ECRIS has been built and tested earlier. For obtaining intensive beams, more relevant for cyclotron, cusp geometry has been replaced by hexapole. Discharge chamber (stainless steel, 50 mm diameter, 250 mm long) is an extension of a coaxial line, feeding RF (9,6 GHz, up to 200 W) to the plasma. The NdFeB hexapole (0,52 T on the surface) has been used. The axial magnetic field is created by water cooled coils. The axial injection line dedicated to K160 isochronous heavy ion cyclotron has been constructed. The line consists of Glaser lenses, double focusing magnet, solenoid and mirror type inflector. The system provides sufficient transmission of the beam from ECR ion source to the firsts orbits of the cyclotron for m/q ranging from 7 to 2. After successful initial tests which were done in July 1997 the ECRIS serves as an external source for Warsaw Cyclotron.EXT-2000-111oai:cds.cern.ch:4273161999
spellingShingle Accelerators and Storage Rings
Sudlitz, K
Kulczycka, E
10 GHz ECRIS for Warsaw Cyclotron
title 10 GHz ECRIS for Warsaw Cyclotron
title_full 10 GHz ECRIS for Warsaw Cyclotron
title_fullStr 10 GHz ECRIS for Warsaw Cyclotron
title_full_unstemmed 10 GHz ECRIS for Warsaw Cyclotron
title_short 10 GHz ECRIS for Warsaw Cyclotron
title_sort 10 ghz ecris for warsaw cyclotron
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/427316
work_keys_str_mv AT sudlitzk 10ghzecrisforwarsawcyclotron
AT kulczyckae 10ghzecrisforwarsawcyclotron