Cargando…

A Simplified Magnetic Field Tapering and Target Optimisation for the Neutrino Factory Capture System

In the Neutrino Factory, a 4 MW proton beam with a kinetic energy between 5 and 15 GeV interacts with a liquid mercury jet target in order to produce pions that will decay to muons, which in turn decay to neutrinos. The baseline-capturing layout consists of a series of solenoids producing a tapered...

Descripción completa

Detalles Bibliográficos
Autores principales: Efthymiopoulos, Ilias, Gilardoni, Simone, Hansen, Ole, Prior, Gersende
Lenguaje:eng
Publicado: 2013
Materias:
Acceso en línea:http://cds.cern.ch/record/2010972
_version_ 1780946623847727104
author Efthymiopoulos, Ilias
Gilardoni, Simone
Hansen, Ole
Prior, Gersende
Hansen, Ole
Prior, Gersende
author_facet Efthymiopoulos, Ilias
Gilardoni, Simone
Hansen, Ole
Prior, Gersende
Hansen, Ole
Prior, Gersende
author_sort Efthymiopoulos, Ilias
collection CERN
description In the Neutrino Factory, a 4 MW proton beam with a kinetic energy between 5 and 15 GeV interacts with a liquid mercury jet target in order to produce pions that will decay to muons, which in turn decay to neutrinos. The baseline-capturing layout consists of a series of solenoids producing a tapered magnetic field from 20 T, near the target, down to 1.5 T at the entrance of the drift section where the captured pions decay into muons to produce a useful beam for the machine. In our alternative layout the magnetic field is rapidly squeezed from 20 T to 1.5T using only three solenoids. This layout showed to produce similar performance, having the advantage being simpler and could potentially be made more robust to radiation. Here we report on further optimization studies taking into account the complete path and shape fluctuations of the Hg-jet.
id oai-inspirehep.net-1337083
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2013
record_format invenio
spelling oai-inspirehep.net-13370832022-08-17T13:32:33Zhttp://cds.cern.ch/record/2010972engEfthymiopoulos, IliasGilardoni, SimoneHansen, OlePrior, GersendeHansen, OlePrior, GersendeA Simplified Magnetic Field Tapering and Target Optimisation for the Neutrino Factory Capture SystemAccelerators and Storage RingsIn the Neutrino Factory, a 4 MW proton beam with a kinetic energy between 5 and 15 GeV interacts with a liquid mercury jet target in order to produce pions that will decay to muons, which in turn decay to neutrinos. The baseline-capturing layout consists of a series of solenoids producing a tapered magnetic field from 20 T, near the target, down to 1.5 T at the entrance of the drift section where the captured pions decay into muons to produce a useful beam for the machine. In our alternative layout the magnetic field is rapidly squeezed from 20 T to 1.5T using only three solenoids. This layout showed to produce similar performance, having the advantage being simpler and could potentially be made more robust to radiation. Here we report on further optimization studies taking into account the complete path and shape fluctuations of the Hg-jet.IPAC-2013-TUPFI018oai:inspirehep.net:13370832013
spellingShingle Accelerators and Storage Rings
Efthymiopoulos, Ilias
Gilardoni, Simone
Hansen, Ole
Prior, Gersende
Hansen, Ole
Prior, Gersende
A Simplified Magnetic Field Tapering and Target Optimisation for the Neutrino Factory Capture System
title A Simplified Magnetic Field Tapering and Target Optimisation for the Neutrino Factory Capture System
title_full A Simplified Magnetic Field Tapering and Target Optimisation for the Neutrino Factory Capture System
title_fullStr A Simplified Magnetic Field Tapering and Target Optimisation for the Neutrino Factory Capture System
title_full_unstemmed A Simplified Magnetic Field Tapering and Target Optimisation for the Neutrino Factory Capture System
title_short A Simplified Magnetic Field Tapering and Target Optimisation for the Neutrino Factory Capture System
title_sort simplified magnetic field tapering and target optimisation for the neutrino factory capture system
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/2010972
work_keys_str_mv AT efthymiopoulosilias asimplifiedmagneticfieldtaperingandtargetoptimisationfortheneutrinofactorycapturesystem
AT gilardonisimone asimplifiedmagneticfieldtaperingandtargetoptimisationfortheneutrinofactorycapturesystem
AT hansenole asimplifiedmagneticfieldtaperingandtargetoptimisationfortheneutrinofactorycapturesystem
AT priorgersende asimplifiedmagneticfieldtaperingandtargetoptimisationfortheneutrinofactorycapturesystem
AT hansenole asimplifiedmagneticfieldtaperingandtargetoptimisationfortheneutrinofactorycapturesystem
AT priorgersende asimplifiedmagneticfieldtaperingandtargetoptimisationfortheneutrinofactorycapturesystem
AT efthymiopoulosilias simplifiedmagneticfieldtaperingandtargetoptimisationfortheneutrinofactorycapturesystem
AT gilardonisimone simplifiedmagneticfieldtaperingandtargetoptimisationfortheneutrinofactorycapturesystem
AT hansenole simplifiedmagneticfieldtaperingandtargetoptimisationfortheneutrinofactorycapturesystem
AT priorgersende simplifiedmagneticfieldtaperingandtargetoptimisationfortheneutrinofactorycapturesystem
AT hansenole simplifiedmagneticfieldtaperingandtargetoptimisationfortheneutrinofactorycapturesystem
AT priorgersende simplifiedmagneticfieldtaperingandtargetoptimisationfortheneutrinofactorycapturesystem