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CERN Linac4 Chopper Dump: Operational Experience and Future Upgrades

The Chopper Dump in the Linac4 accelerator at CERN is a beam-intercepting device responsible for the absorption of the 3 MeV H⁻ ion beam produced by the Linac4 source and deflected upstream by an electromagnetic chopper. It allows a portion of the beam, which would otherwise fall into the unstable r...

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Autores principales: Sharp, Calum, Andreu Muñoz, Pablo, Calviani, Marco, Costa, Gabriele, Esposito, Luigi Salvatore, Franqueira Ximenes, Rui, Grenier, Damien, Grenier-Boley, Edouard, Hunt, James, Krainer, Alexander, Mucher, Christophe, Torregrosa, Claudio
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:https://dx.doi.org/10.18429/JACoW-IPAC2022-TUPOTK063
http://cds.cern.ch/record/2845785
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author Sharp, Calum
Andreu Muñoz, Pablo
Calviani, Marco
Costa, Gabriele
Esposito, Luigi Salvatore
Franqueira Ximenes, Rui
Grenier, Damien
Grenier-Boley, Edouard
Hunt, James
Krainer, Alexander
Mucher, Christophe
Torregrosa, Claudio
author_facet Sharp, Calum
Andreu Muñoz, Pablo
Calviani, Marco
Costa, Gabriele
Esposito, Luigi Salvatore
Franqueira Ximenes, Rui
Grenier, Damien
Grenier-Boley, Edouard
Hunt, James
Krainer, Alexander
Mucher, Christophe
Torregrosa, Claudio
author_sort Sharp, Calum
collection CERN
description The Chopper Dump in the Linac4 accelerator at CERN is a beam-intercepting device responsible for the absorption of the 3 MeV H⁻ ion beam produced by the Linac4 source and deflected upstream by an electromagnetic chopper. It allows a portion of the beam, which would otherwise fall into the unstable region of the radiofrequency buckets in the Proton Synchrotron Booster, to be dumped at low energy with minimal induced radiation. It may also be used to absorb the entire beam. With peak currents of 25 to 45 mA and shallow penetration, this results in large deposited energy densities, thermal gradients and mechanical stresses. Additional constraints arise from geometric integration, vacuum and radiation protection requirements. Material selection, beam-matter interaction studies and thermo-structural analyses are important aspects of the design process. The Chopper Dump underwent modification in 2019 following observed material degradation in the original version of the device. The experience gained, modifications made and observations noted since then are detailed herein. Against this background, the design and analysis of an upgraded device, intended to cope with future operational conditions, is outlined and discussed.
id cern-2845785
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
record_format invenio
spelling cern-28457852023-01-11T21:31:20Zdoi:10.18429/JACoW-IPAC2022-TUPOTK063http://cds.cern.ch/record/2845785engSharp, CalumAndreu Muñoz, PabloCalviani, MarcoCosta, GabrieleEsposito, Luigi SalvatoreFranqueira Ximenes, RuiGrenier, DamienGrenier-Boley, EdouardHunt, JamesKrainer, AlexanderMucher, ChristopheTorregrosa, ClaudioCERN Linac4 Chopper Dump: Operational Experience and Future UpgradesAccelerators and Storage RingsThe Chopper Dump in the Linac4 accelerator at CERN is a beam-intercepting device responsible for the absorption of the 3 MeV H⁻ ion beam produced by the Linac4 source and deflected upstream by an electromagnetic chopper. It allows a portion of the beam, which would otherwise fall into the unstable region of the radiofrequency buckets in the Proton Synchrotron Booster, to be dumped at low energy with minimal induced radiation. It may also be used to absorb the entire beam. With peak currents of 25 to 45 mA and shallow penetration, this results in large deposited energy densities, thermal gradients and mechanical stresses. Additional constraints arise from geometric integration, vacuum and radiation protection requirements. Material selection, beam-matter interaction studies and thermo-structural analyses are important aspects of the design process. The Chopper Dump underwent modification in 2019 following observed material degradation in the original version of the device. The experience gained, modifications made and observations noted since then are detailed herein. Against this background, the design and analysis of an upgraded device, intended to cope with future operational conditions, is outlined and discussed.oai:cds.cern.ch:28457852022
spellingShingle Accelerators and Storage Rings
Sharp, Calum
Andreu Muñoz, Pablo
Calviani, Marco
Costa, Gabriele
Esposito, Luigi Salvatore
Franqueira Ximenes, Rui
Grenier, Damien
Grenier-Boley, Edouard
Hunt, James
Krainer, Alexander
Mucher, Christophe
Torregrosa, Claudio
CERN Linac4 Chopper Dump: Operational Experience and Future Upgrades
title CERN Linac4 Chopper Dump: Operational Experience and Future Upgrades
title_full CERN Linac4 Chopper Dump: Operational Experience and Future Upgrades
title_fullStr CERN Linac4 Chopper Dump: Operational Experience and Future Upgrades
title_full_unstemmed CERN Linac4 Chopper Dump: Operational Experience and Future Upgrades
title_short CERN Linac4 Chopper Dump: Operational Experience and Future Upgrades
title_sort cern linac4 chopper dump: operational experience and future upgrades
topic Accelerators and Storage Rings
url https://dx.doi.org/10.18429/JACoW-IPAC2022-TUPOTK063
http://cds.cern.ch/record/2845785
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