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Multi-turn Study in FLUKA for the Design of CERN-PS Internal Beam Dumps

The CERN Proton-Synchrotron (PS) accelerator is currently equipped with two internal beam dumps in operation since the 1970's. An upgrade is required to be able to withstand the beams that will be produced after the end of the LIU (LHC Injector Upgrade) project. For the design of the new dumps,...

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Autores principales: Briz Monago, Jose, Calviani, Marco, Cerutti, Francesco, Esala, Jaakko, Gilardoni, Simone, Nuiry, Francois-Xavier, Romagnoli, Giulia, Sterbini, Guido, Vlachoudis, Vasilis
Lenguaje:eng
Publicado: 2018
Materias:
Acceso en línea:https://dx.doi.org/10.18429/JACoW-IPAC2018-TUPAF025
http://cds.cern.ch/record/2664977
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author Briz Monago, Jose
Calviani, Marco
Cerutti, Francesco
Esala, Jaakko
Gilardoni, Simone
Nuiry, Francois-Xavier
Romagnoli, Giulia
Sterbini, Guido
Vlachoudis, Vasilis
author_facet Briz Monago, Jose
Calviani, Marco
Cerutti, Francesco
Esala, Jaakko
Gilardoni, Simone
Nuiry, Francois-Xavier
Romagnoli, Giulia
Sterbini, Guido
Vlachoudis, Vasilis
author_sort Briz Monago, Jose
collection CERN
description The CERN Proton-Synchrotron (PS) accelerator is currently equipped with two internal beam dumps in operation since the 1970's. An upgrade is required to be able to withstand the beams that will be produced after the end of the LIU (LHC Injector Upgrade) project. For the design of the new dumps, the interaction and transport of beam and all secondary particles generated has been simulated using FLUKA. The working principle of the internal beam dump in the PS ring is very peculiar with respect to the other dumps in the CERN accelerator complex. A moving dump intercepts the circulating beam during few milliseconds like a fast scraper. The moving dump shaving the beam, the multi-turn transport of beam particles in the PS accelerator and a time-dependent energy deposition in the dump were modeled. The methodology and the results obtained in our studies for the dump core and downstream equipment will be reported in this contribution.
id oai-inspirehep.net-1691470
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2018
record_format invenio
spelling oai-inspirehep.net-16914702019-09-30T06:29:59Zdoi:10.18429/JACoW-IPAC2018-TUPAF025http://cds.cern.ch/record/2664977engBriz Monago, JoseCalviani, MarcoCerutti, FrancescoEsala, JaakkoGilardoni, SimoneNuiry, Francois-XavierRomagnoli, GiuliaSterbini, GuidoVlachoudis, VasilisMulti-turn Study in FLUKA for the Design of CERN-PS Internal Beam DumpsAccelerators and Storage RingsThe CERN Proton-Synchrotron (PS) accelerator is currently equipped with two internal beam dumps in operation since the 1970's. An upgrade is required to be able to withstand the beams that will be produced after the end of the LIU (LHC Injector Upgrade) project. For the design of the new dumps, the interaction and transport of beam and all secondary particles generated has been simulated using FLUKA. The working principle of the internal beam dump in the PS ring is very peculiar with respect to the other dumps in the CERN accelerator complex. A moving dump intercepts the circulating beam during few milliseconds like a fast scraper. The moving dump shaving the beam, the multi-turn transport of beam particles in the PS accelerator and a time-dependent energy deposition in the dump were modeled. The methodology and the results obtained in our studies for the dump core and downstream equipment will be reported in this contribution.The CERN Proton-Synchrotron (PS) accelerator is cur- rently equipped with two internal beam dumps in operation since the 1970s. An upgrade is required to be able to with- stand the beams that will be produced after the end of the LIU (LHC Injector Upgrade) project. For the design of the new dumps, the interaction and transport of beam and all secondary particles generated has been simulated using FLUKA. The working principle of the PS internal beam dump is peculiar compared to the other beam dumps in the CERN ac- celerator complex: a moving dump intercepts the circulating beam during few milliseconds similarly to a fast scraper. The moving dump shaving the beam, the multi-turn transport of beam particles in the PS accelerator, and a time-dependent energy deposition in the dump were modeled. The method- ology used in the FLUKA simulations and the comparison with experimental results are presented.oai:inspirehep.net:16914702018
spellingShingle Accelerators and Storage Rings
Briz Monago, Jose
Calviani, Marco
Cerutti, Francesco
Esala, Jaakko
Gilardoni, Simone
Nuiry, Francois-Xavier
Romagnoli, Giulia
Sterbini, Guido
Vlachoudis, Vasilis
Multi-turn Study in FLUKA for the Design of CERN-PS Internal Beam Dumps
title Multi-turn Study in FLUKA for the Design of CERN-PS Internal Beam Dumps
title_full Multi-turn Study in FLUKA for the Design of CERN-PS Internal Beam Dumps
title_fullStr Multi-turn Study in FLUKA for the Design of CERN-PS Internal Beam Dumps
title_full_unstemmed Multi-turn Study in FLUKA for the Design of CERN-PS Internal Beam Dumps
title_short Multi-turn Study in FLUKA for the Design of CERN-PS Internal Beam Dumps
title_sort multi-turn study in fluka for the design of cern-ps internal beam dumps
topic Accelerators and Storage Rings
url https://dx.doi.org/10.18429/JACoW-IPAC2018-TUPAF025
http://cds.cern.ch/record/2664977
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