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Electron Model of an FFAG Muon Accelerator

Parameters are derived for the lattice and RF system of an electron model of a non-scaling FFAG ring for accelerating muons. The model accelerates electrons from about 10 to about 20 MeV, and has about 15 m circumference. Magnet types and dimensions, spacing, half apertures, about 12 mm by 20 mm, an...

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Detalles Bibliográficos
Autores principales: Keil, Eberhard, Bergy, J S, Sessler, Andrew M
Lenguaje:eng
Publicado: 2004
Materias:
Acceso en línea:http://cds.cern.ch/record/791380
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author Keil, Eberhard
Bergy, J S
Sessler, Andrew M
author_facet Keil, Eberhard
Bergy, J S
Sessler, Andrew M
author_sort Keil, Eberhard
collection CERN
description Parameters are derived for the lattice and RF system of an electron model of a non-scaling FFAG ring for accelerating muons. The model accelerates electrons from about 10 to about 20 MeV, and has about 15 m circumference. Magnet types and dimensions, spacing, half apertures, about 12 mm by 20 mm, and number of cells are presented. The tune variation with momentum covers several integers, similar to that in a full machine, and allows the study of resonance crossing. The consequences of misaligned magnets are studied by simulation. The variation of orbit length with momentum is less than 36 mm, and allows the study of acceleration outside a bucket. A 100 mm straight section, in each of the cells, is adequately long for an RF cavity operating at 3 GHz. Hamiltonian dynamics in longitudinal phase space close to transition is used to calculate the accelerating voltage needed. Acceleration is studied by simulation. Practical RF system design issues, e.g. RF power, and beam loading are estimated.
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institution Organización Europea para la Investigación Nuclear
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publishDate 2004
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spelling cern-7913802022-08-17T13:34:25Zhttp://cds.cern.ch/record/791380engKeil, EberhardBergy, J SSessler, Andrew MElectron Model of an FFAG Muon AcceleratorAccelerators and Storage RingsParameters are derived for the lattice and RF system of an electron model of a non-scaling FFAG ring for accelerating muons. The model accelerates electrons from about 10 to about 20 MeV, and has about 15 m circumference. Magnet types and dimensions, spacing, half apertures, about 12 mm by 20 mm, and number of cells are presented. The tune variation with momentum covers several integers, similar to that in a full machine, and allows the study of resonance crossing. The consequences of misaligned magnets are studied by simulation. The variation of orbit length with momentum is less than 36 mm, and allows the study of acceleration outside a bucket. A 100 mm straight section, in each of the cells, is adequately long for an RF cavity operating at 3 GHz. Hamiltonian dynamics in longitudinal phase space close to transition is used to calculate the accelerating voltage needed. Acceleration is studied by simulation. Practical RF system design issues, e.g. RF power, and beam loading are estimated.CERN-AB-2004-060oai:cds.cern.ch:7913802004-08-17
spellingShingle Accelerators and Storage Rings
Keil, Eberhard
Bergy, J S
Sessler, Andrew M
Electron Model of an FFAG Muon Accelerator
title Electron Model of an FFAG Muon Accelerator
title_full Electron Model of an FFAG Muon Accelerator
title_fullStr Electron Model of an FFAG Muon Accelerator
title_full_unstemmed Electron Model of an FFAG Muon Accelerator
title_short Electron Model of an FFAG Muon Accelerator
title_sort electron model of an ffag muon accelerator
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/791380
work_keys_str_mv AT keileberhard electronmodelofanffagmuonaccelerator
AT bergyjs electronmodelofanffagmuonaccelerator
AT sesslerandrewm electronmodelofanffagmuonaccelerator