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Update on comparison of the particle production using Mars simulation code

In the International Design Study for the Neutrino Factory (IDS-NF), a 5-15 GeV (kinetic energy) proton beam impinges a Hg jet target, in order to produce pions that will decay into muons. The muons are captured and transformed into a beam, then passed to the downstream acceleration system. The targ...

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Detalles Bibliográficos
Autores principales: Prior, G, Gilardoni, S S, Kirk, H G, Souchlas, N, Ding, X
Lenguaje:eng
Publicado: 2011
Materias:
Acceso en línea:http://cds.cern.ch/record/1382080
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author Prior, G
Gilardoni, S S
Kirk, H G
Souchlas, N
Ding, X
author_facet Prior, G
Gilardoni, S S
Kirk, H G
Souchlas, N
Ding, X
author_sort Prior, G
collection CERN
description In the International Design Study for the Neutrino Factory (IDS-NF), a 5-15 GeV (kinetic energy) proton beam impinges a Hg jet target, in order to produce pions that will decay into muons. The muons are captured and transformed into a beam, then passed to the downstream acceleration system. The target sits in a solenoid eld tapering from 20 T down to below 2 T, over several meters, permitting an optimized capture of the pions that will produce useful muons for the machine. The target and pion capture systems have been simulated using MARS. This paper presents an updated comparison of the particles production using the MARS code versions m1507 and m1510 on different machines located at the European Organization for Nuclear Research (CERN) and Brookhaven National Laboratory (BNL).
id cern-1382080
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2011
record_format invenio
spelling cern-13820802022-08-17T13:31:42Zhttp://cds.cern.ch/record/1382080engPrior, GGilardoni, S SKirk, H GSouchlas, NDing, XUpdate on comparison of the particle production using Mars simulation codeAccelerators and Storage RingsIn the International Design Study for the Neutrino Factory (IDS-NF), a 5-15 GeV (kinetic energy) proton beam impinges a Hg jet target, in order to produce pions that will decay into muons. The muons are captured and transformed into a beam, then passed to the downstream acceleration system. The target sits in a solenoid eld tapering from 20 T down to below 2 T, over several meters, permitting an optimized capture of the pions that will produce useful muons for the machine. The target and pion capture systems have been simulated using MARS. This paper presents an updated comparison of the particles production using the MARS code versions m1507 and m1510 on different machines located at the European Organization for Nuclear Research (CERN) and Brookhaven National Laboratory (BNL).CERN-ATS-2011-164oai:cds.cern.ch:13820802011-09-14
spellingShingle Accelerators and Storage Rings
Prior, G
Gilardoni, S S
Kirk, H G
Souchlas, N
Ding, X
Update on comparison of the particle production using Mars simulation code
title Update on comparison of the particle production using Mars simulation code
title_full Update on comparison of the particle production using Mars simulation code
title_fullStr Update on comparison of the particle production using Mars simulation code
title_full_unstemmed Update on comparison of the particle production using Mars simulation code
title_short Update on comparison of the particle production using Mars simulation code
title_sort update on comparison of the particle production using mars simulation code
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1382080
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AT gilardoniss updateoncomparisonoftheparticleproductionusingmarssimulationcode
AT kirkhg updateoncomparisonoftheparticleproductionusingmarssimulationcode
AT souchlasn updateoncomparisonoftheparticleproductionusingmarssimulationcode
AT dingx updateoncomparisonoftheparticleproductionusingmarssimulationcode