Cargando…

Beam dynamics study of a muon cooling experiment with 200 MHz cavities in the framework of the CERN cooling study

Muon cooling is one of the building blocks for a Neutrino Factory. It has the potential to increase the muon flux at the detector by an order of magnitude. Different set-ups for the experimental observation of cooling are proposed and discussed by an international collaboration (MICE). In this paper...

Descripción completa

Detalles Bibliográficos
Autores principales: Migliorati, M, Palumbo, L, Tazzioli, F, Vaccarezza, C, Hanke, K, Holzer, E B, Lombardi, A M
Lenguaje:eng
Publicado: 2002
Materias:
Acceso en línea:http://cds.cern.ch/record/566100
_version_ 1780899167736954880
author Migliorati, M
Palumbo, L
Tazzioli, F
Vaccarezza, C
Hanke, K
Holzer, E B
Lombardi, A M
author_facet Migliorati, M
Palumbo, L
Tazzioli, F
Vaccarezza, C
Hanke, K
Holzer, E B
Lombardi, A M
author_sort Migliorati, M
collection CERN
description Muon cooling is one of the building blocks for a Neutrino Factory. It has the potential to increase the muon flux at the detector by an order of magnitude. Different set-ups for the experimental observation of cooling are proposed and discussed by an international collaboration (MICE). In this paper we present the results of the tracking studies for a cooling experiment based on 200 MHz cavities with superconducting solenoids and liquid hydrogen absorbers. For 200 MeV muons passing through a system of 4 cavities at 7.6MV/m, the number of muons in a given acceptance increases by a factor of about 10%. This is believed to be well within capability of the measurement apparatus and sufficient to gather important information for the final design of a full-scale cooling channel.
id cern-566100
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2002
record_format invenio
spelling cern-5661002022-08-17T13:35:43Zhttp://cds.cern.ch/record/566100engMigliorati, MPalumbo, LTazzioli, FVaccarezza, CHanke, KHolzer, E BLombardi, A MBeam dynamics study of a muon cooling experiment with 200 MHz cavities in the framework of the CERN cooling studyAccelerators and Storage RingsMuon cooling is one of the building blocks for a Neutrino Factory. It has the potential to increase the muon flux at the detector by an order of magnitude. Different set-ups for the experimental observation of cooling are proposed and discussed by an international collaboration (MICE). In this paper we present the results of the tracking studies for a cooling experiment based on 200 MHz cavities with superconducting solenoids and liquid hydrogen absorbers. For 200 MeV muons passing through a system of 4 cavities at 7.6MV/m, the number of muons in a given acceptance increases by a factor of about 10%. This is believed to be well within capability of the measurement apparatus and sufficient to gather important information for the final design of a full-scale cooling channel.CERN-PS-2002-044-PPoai:cds.cern.ch:5661002002-07-04
spellingShingle Accelerators and Storage Rings
Migliorati, M
Palumbo, L
Tazzioli, F
Vaccarezza, C
Hanke, K
Holzer, E B
Lombardi, A M
Beam dynamics study of a muon cooling experiment with 200 MHz cavities in the framework of the CERN cooling study
title Beam dynamics study of a muon cooling experiment with 200 MHz cavities in the framework of the CERN cooling study
title_full Beam dynamics study of a muon cooling experiment with 200 MHz cavities in the framework of the CERN cooling study
title_fullStr Beam dynamics study of a muon cooling experiment with 200 MHz cavities in the framework of the CERN cooling study
title_full_unstemmed Beam dynamics study of a muon cooling experiment with 200 MHz cavities in the framework of the CERN cooling study
title_short Beam dynamics study of a muon cooling experiment with 200 MHz cavities in the framework of the CERN cooling study
title_sort beam dynamics study of a muon cooling experiment with 200 mhz cavities in the framework of the cern cooling study
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/566100
work_keys_str_mv AT miglioratim beamdynamicsstudyofamuoncoolingexperimentwith200mhzcavitiesintheframeworkofthecerncoolingstudy
AT palumbol beamdynamicsstudyofamuoncoolingexperimentwith200mhzcavitiesintheframeworkofthecerncoolingstudy
AT tazziolif beamdynamicsstudyofamuoncoolingexperimentwith200mhzcavitiesintheframeworkofthecerncoolingstudy
AT vaccarezzac beamdynamicsstudyofamuoncoolingexperimentwith200mhzcavitiesintheframeworkofthecerncoolingstudy
AT hankek beamdynamicsstudyofamuoncoolingexperimentwith200mhzcavitiesintheframeworkofthecerncoolingstudy
AT holzereb beamdynamicsstudyofamuoncoolingexperimentwith200mhzcavitiesintheframeworkofthecerncoolingstudy
AT lombardiam beamdynamicsstudyofamuoncoolingexperimentwith200mhzcavitiesintheframeworkofthecerncoolingstudy