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The RF System for the International Muon Ionisation Cooling Experiment

The International Muon Ionisation Cooling Experiment (MICE) is designed to demonstrate the effectiveness of ionisation cooling to reduce the phase space footprint of a charged particle beam, principally to allow the subsequent acceleration of muons for next generation colliders and/or neutrino facto...

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Autores principales: Ronald, K., Whyte, C.G., Dick, A.J., Speirs, D.C., Moss, A., Grant, A., White, C., Griffiths, S., Stanley, T., Li, D., DeMello, A.J., Virostek, S., Moretti, A., Pasquinelli, R., Peterson, D., Schultz, R., Volk, J., Popovic, M., Torun, Y., Hanlet, P., Alsari, S., Long, K., Pasternak, J., Hunt, C., Summers, D., Luo, T., Smith, P.J.
Formato: info:eu-repo/semantics/article
Lenguaje:eng
Publicado: 2014
Materias:
Acceso en línea:http://cds.cern.ch/record/1712219
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author Ronald, K.
Whyte, C.G.
Dick, A.J.
Speirs, D.C.
Moss, A.
Grant, A.
White, C.
Griffiths, S.
Stanley, T.
Li, D.
DeMello, A.J.
Virostek, S.
Moretti, A.
Pasquinelli, R.
Peterson, D.
Schultz, R.
Volk, J.
Popovic, M.
Torun, Y.
Hanlet, P.
Alsari, S.
Long, K.
Pasternak, J.
Hunt, C.
Summers, D.
Luo, T.
Smith, P.J.
author_facet Ronald, K.
Whyte, C.G.
Dick, A.J.
Speirs, D.C.
Moss, A.
Grant, A.
White, C.
Griffiths, S.
Stanley, T.
Li, D.
DeMello, A.J.
Virostek, S.
Moretti, A.
Pasquinelli, R.
Peterson, D.
Schultz, R.
Volk, J.
Popovic, M.
Torun, Y.
Hanlet, P.
Alsari, S.
Long, K.
Pasternak, J.
Hunt, C.
Summers, D.
Luo, T.
Smith, P.J.
author_sort Ronald, K.
collection CERN
description The International Muon Ionisation Cooling Experiment (MICE) is designed to demonstrate the effectiveness of ionisation cooling to reduce the phase space footprint of a charged particle beam, principally to allow the subsequent acceleration of muons for next generation colliders and/or neutrino factories. The experiment (and indeed any subsequent accelerator cooling channel based on the same principles) poses certain unusual requirements on its RF system, whilst the precision measurement of the ionisation cooling process demands special diagnostics. This paper shall outline the key features of the RF system, including the low level RF control, the power amplifier chain, distribution network, cavities, tuners and couplers, many parts of which are required to operate in a high magnetic field environment. The RF diagnostics which, in conjunction with the other MICE diagnostics, shall allow detailed knowledge of the amplitude and phase of the acceleration field during the transit of each individual muon will also be discussed.
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spelling cern-17122192019-09-30T06:29:59Z http://cds.cern.ch/record/1712219 eng Ronald, K. Whyte, C.G. Dick, A.J. Speirs, D.C. Moss, A. Grant, A. White, C. Griffiths, S. Stanley, T. Li, D. DeMello, A.J. Virostek, S. Moretti, A. Pasquinelli, R. Peterson, D. Schultz, R. Volk, J. Popovic, M. Torun, Y. Hanlet, P. Alsari, S. Long, K. Pasternak, J. Hunt, C. Summers, D. Luo, T. Smith, P.J. The RF System for the International Muon Ionisation Cooling Experiment Accelerators and Storage Rings 7: ICTF R&D Infrastructure 7.1: RFP ICTF RF power infrastructure The International Muon Ionisation Cooling Experiment (MICE) is designed to demonstrate the effectiveness of ionisation cooling to reduce the phase space footprint of a charged particle beam, principally to allow the subsequent acceleration of muons for next generation colliders and/or neutrino factories. The experiment (and indeed any subsequent accelerator cooling channel based on the same principles) poses certain unusual requirements on its RF system, whilst the precision measurement of the ionisation cooling process demands special diagnostics. This paper shall outline the key features of the RF system, including the low level RF control, the power amplifier chain, distribution network, cavities, tuners and couplers, many parts of which are required to operate in a high magnetic field environment. The RF diagnostics which, in conjunction with the other MICE diagnostics, shall allow detailed knowledge of the amplitude and phase of the acceleration field during the transit of each individual muon will also be discussed. info:eu-repo/grantAgreement/EC/FP7/261905 info:eu-repo/semantics/openAccess Education Level info:eu-repo/semantics/article http://cds.cern.ch/record/1712219 2014
spellingShingle Accelerators and Storage Rings
7: ICTF R&D Infrastructure
7.1: RFP ICTF RF power infrastructure
Ronald, K.
Whyte, C.G.
Dick, A.J.
Speirs, D.C.
Moss, A.
Grant, A.
White, C.
Griffiths, S.
Stanley, T.
Li, D.
DeMello, A.J.
Virostek, S.
Moretti, A.
Pasquinelli, R.
Peterson, D.
Schultz, R.
Volk, J.
Popovic, M.
Torun, Y.
Hanlet, P.
Alsari, S.
Long, K.
Pasternak, J.
Hunt, C.
Summers, D.
Luo, T.
Smith, P.J.
The RF System for the International Muon Ionisation Cooling Experiment
title The RF System for the International Muon Ionisation Cooling Experiment
title_full The RF System for the International Muon Ionisation Cooling Experiment
title_fullStr The RF System for the International Muon Ionisation Cooling Experiment
title_full_unstemmed The RF System for the International Muon Ionisation Cooling Experiment
title_short The RF System for the International Muon Ionisation Cooling Experiment
title_sort rf system for the international muon ionisation cooling experiment
topic Accelerators and Storage Rings
7: ICTF R&D Infrastructure
7.1: RFP ICTF RF power infrastructure
url http://cds.cern.ch/record/1712219
http://cds.cern.ch/record/1712219
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