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Error study of CERN Linac 4

LINAC 4 is a normal conducting H- structure proposed to intensify the proton flux currently available for the CERN accelerator chain. This linac is designed to accelerate a 65 mA beam up to 160 MeV to be injected into the CERN Proton Synchrotron Booster. The acceleration is performed up to 3 MeV by...

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Autores principales: Baylac, M., De Conto, J.M., Froidefond, E., Sargsyan, E.
Lenguaje:eng
Publicado: 2006
Materias:
Acceso en línea:http://cds.cern.ch/record/973095
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author Baylac, M.
De Conto, J.M.
Froidefond, E.
Sargsyan, E.
author_facet Baylac, M.
De Conto, J.M.
Froidefond, E.
Sargsyan, E.
author_sort Baylac, M.
collection CERN
description LINAC 4 is a normal conducting H- structure proposed to intensify the proton flux currently available for the CERN accelerator chain. This linac is designed to accelerate a 65 mA beam up to 160 MeV to be injected into the CERN Proton Synchrotron Booster. The acceleration is performed up to 3 MeV by a Radio-Frequency Quadrupole resonating at 352 MHz followed by a serie of two drift tube systems (conventional Alvarez and Cell Coupled Drift Tube Linac) boosting the beam up to 90 MeV at 352 MHz and finished by a Side Coupled Linac at 704 MHz. Beam dynamics was studied and optimized performing end-to-end simulations. Robustness of this design was verified by modelling machine errors. This paper presents the results of this error study.
id cern-973095
institution Organización Europea para la Investigación Nuclear
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spelling cern-9730952023-03-14T17:14:37Zhttp://cds.cern.ch/record/973095engBaylac, M.De Conto, J.M.Froidefond, E.Sargsyan, E.Error study of CERN Linac 4Other Fields of PhysicsLINAC 4 is a normal conducting H- structure proposed to intensify the proton flux currently available for the CERN accelerator chain. This linac is designed to accelerate a 65 mA beam up to 160 MeV to be injected into the CERN Proton Synchrotron Booster. The acceleration is performed up to 3 MeV by a Radio-Frequency Quadrupole resonating at 352 MHz followed by a serie of two drift tube systems (conventional Alvarez and Cell Coupled Drift Tube Linac) boosting the beam up to 90 MeV at 352 MHz and finished by a Side Coupled Linac at 704 MHz. Beam dynamics was studied and optimized performing end-to-end simulations. Robustness of this design was verified by modelling machine errors. This paper presents the results of this error study.LINAC 4 is a normal conducting H- structure proposed to intensify the proton flux currently available for the CERN accelerator chain. This linac is designed to accelerate a 65 mA beam up to 160 MeV to be injected into the CERN Proton Synchrotron Booster. The acceleration is performed up to 3 MeV by a Radio-Frequency Quadrupole resonating at 352 MHz followed by a serie of two drift tube systems (conventional Alvarez and Cell Coupled Drift Tube Linac) boosting the beam up to 90 MeV at 352 MHz and finished by a Side Coupled Linac at 704 MHz. Beam dynamics was studied and optimized performing end-to-end simulations. Robustness of this design was verified by modelling machine errors. This paper presents the results of this error study.physics/0607023LPSC-0642LPSC-2006-42CARE-Conf-06-007-HIPPICARE-Conf-2006-007-HIPPIoai:cds.cern.ch:9730952006-07-04
spellingShingle Other Fields of Physics
Baylac, M.
De Conto, J.M.
Froidefond, E.
Sargsyan, E.
Error study of CERN Linac 4
title Error study of CERN Linac 4
title_full Error study of CERN Linac 4
title_fullStr Error study of CERN Linac 4
title_full_unstemmed Error study of CERN Linac 4
title_short Error study of CERN Linac 4
title_sort error study of cern linac 4
topic Other Fields of Physics
url http://cds.cern.ch/record/973095
work_keys_str_mv AT baylacm errorstudyofcernlinac4
AT decontojm errorstudyofcernlinac4
AT froidefonde errorstudyofcernlinac4
AT sargsyane errorstudyofcernlinac4