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Tune and space charge studies for high-brightness and high-intensity beams at CERN PS

The current 1.4 GeV CERN PS injection energy limits the maximum intensity required by the future High- Luminosity LHC. The bare-machine large chromaticity combined with the non-linear space charge forces make high-brightness and high-intensity beams cross betatron resonances along the injection flat...

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Detalles Bibliográficos
Autores principales: Gilardoni, S S, Aumon, S, Brenas, J, Freyermuth, P, Huschauer, A, Maillet, R, Matli, E, Steerenberg, R, Vandorpe, B, Benedetto, E
Lenguaje:eng
Publicado: 2011
Materias:
Acceso en línea:http://cds.cern.ch/record/1381218
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author Gilardoni, S S
Aumon, S
Brenas, J
Freyermuth, P
Huschauer, A
Maillet, R
Matli, E
Steerenberg, R
Vandorpe, B
Benedetto, E
author_facet Gilardoni, S S
Aumon, S
Brenas, J
Freyermuth, P
Huschauer, A
Maillet, R
Matli, E
Steerenberg, R
Vandorpe, B
Benedetto, E
author_sort Gilardoni, S S
collection CERN
description The current 1.4 GeV CERN PS injection energy limits the maximum intensity required by the future High- Luminosity LHC. The bare-machine large chromaticity combined with the non-linear space charge forces make high-brightness and high-intensity beams cross betatron resonances along the injection flat bottom, inducing transverse emittance blow-up and beam losses. A scan of the working point plane (Qx,Qy) was done in order to identify beam destructive resonances, in the framework of a possible 2 GeV injection energy upgrade which would reduce the space charge effect on the tune. Experiments were carried out in order to review the maximum space charge tune shift for which no transverse emittance blow-up is observed. The results of measurements and simulations will be presented in this paper.
id cern-1381218
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2011
record_format invenio
spelling cern-13812182022-08-17T13:31:00Zhttp://cds.cern.ch/record/1381218engGilardoni, S SAumon, SBrenas, JFreyermuth, PHuschauer, AMaillet, RMatli, ESteerenberg, RVandorpe, BBenedetto, ETune and space charge studies for high-brightness and high-intensity beams at CERN PSAccelerators and Storage RingsThe current 1.4 GeV CERN PS injection energy limits the maximum intensity required by the future High- Luminosity LHC. The bare-machine large chromaticity combined with the non-linear space charge forces make high-brightness and high-intensity beams cross betatron resonances along the injection flat bottom, inducing transverse emittance blow-up and beam losses. A scan of the working point plane (Qx,Qy) was done in order to identify beam destructive resonances, in the framework of a possible 2 GeV injection energy upgrade which would reduce the space charge effect on the tune. Experiments were carried out in order to review the maximum space charge tune shift for which no transverse emittance blow-up is observed. The results of measurements and simulations will be presented in this paper.CERN-ATS-2011-090oai:cds.cern.ch:13812182011-09-12
spellingShingle Accelerators and Storage Rings
Gilardoni, S S
Aumon, S
Brenas, J
Freyermuth, P
Huschauer, A
Maillet, R
Matli, E
Steerenberg, R
Vandorpe, B
Benedetto, E
Tune and space charge studies for high-brightness and high-intensity beams at CERN PS
title Tune and space charge studies for high-brightness and high-intensity beams at CERN PS
title_full Tune and space charge studies for high-brightness and high-intensity beams at CERN PS
title_fullStr Tune and space charge studies for high-brightness and high-intensity beams at CERN PS
title_full_unstemmed Tune and space charge studies for high-brightness and high-intensity beams at CERN PS
title_short Tune and space charge studies for high-brightness and high-intensity beams at CERN PS
title_sort tune and space charge studies for high-brightness and high-intensity beams at cern ps
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1381218
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