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Study of emittance blow-up sources between the PS booster and the 26 GeV PS

The tight transverse emittance budget for the bright beams foreseen for the LHC era demands that all sources of emittance blow-up in the injector chain are reduced to a minimum. A critical region is the transfer between the PS Booster (PSB) and the 26 GeV PS. The four rings of the PSB run with RF ha...

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Detalles Bibliográficos
Autores principales: Jansson, A, Lindroos, M, Martini, M, Schindl, Karlheinz
Lenguaje:eng
Publicado: 1998
Materias:
Acceso en línea:http://cds.cern.ch/record/371832
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author Jansson, A
Lindroos, M
Martini, M
Schindl, Karlheinz
author_facet Jansson, A
Lindroos, M
Martini, M
Schindl, Karlheinz
author_sort Jansson, A
collection CERN
description The tight transverse emittance budget for the bright beams foreseen for the LHC era demands that all sources of emittance blow-up in the injector chain are reduced to a minimum. A critical region is the transfer between the PS Booster (PSB) and the 26 GeV PS. The four rings of the PSB run with RF harmonic one, and for the LHC beam the PS will be filled with eight bunches originating from two consecutive PSB cycles. Thus, each bunch will be different and has to be individually treated. The present recombination scheme introduces an important difference in lattice parameters between the bunches from different rings. The difference between the bunches would, if left uncorrected, result in a substantial emittance blow-up. Several possible improvements of the recombination stage have been studied, including magnet shims, correction quadrupoles and an RF quadrupole magnet. To complement the theoretical studies, the contribution of mismatch and missteering to the emittance blow-up have been measured using a LHC-type beam, measuring the emittance in the PS with a wire-grid and fast wire-scanners. Results of the calculation and the measurements will be discussed and a strategy to minimise the blow-up will be indicated.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1998
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spelling cern-3718322021-11-11T09:54:28Zhttp://cds.cern.ch/record/371832engJansson, ALindroos, MMartini, MSchindl, KarlheinzStudy of emittance blow-up sources between the PS booster and the 26 GeV PSAccelerators and Storage RingsThe tight transverse emittance budget for the bright beams foreseen for the LHC era demands that all sources of emittance blow-up in the injector chain are reduced to a minimum. A critical region is the transfer between the PS Booster (PSB) and the 26 GeV PS. The four rings of the PSB run with RF harmonic one, and for the LHC beam the PS will be filled with eight bunches originating from two consecutive PSB cycles. Thus, each bunch will be different and has to be individually treated. The present recombination scheme introduces an important difference in lattice parameters between the bunches from different rings. The difference between the bunches would, if left uncorrected, result in a substantial emittance blow-up. Several possible improvements of the recombination stage have been studied, including magnet shims, correction quadrupoles and an RF quadrupole magnet. To complement the theoretical studies, the contribution of mismatch and missteering to the emittance blow-up have been measured using a LHC-type beam, measuring the emittance in the PS with a wire-grid and fast wire-scanners. Results of the calculation and the measurements will be discussed and a strategy to minimise the blow-up will be indicated.CERN-PS-98-058-OPoai:cds.cern.ch:3718321998-11-20
spellingShingle Accelerators and Storage Rings
Jansson, A
Lindroos, M
Martini, M
Schindl, Karlheinz
Study of emittance blow-up sources between the PS booster and the 26 GeV PS
title Study of emittance blow-up sources between the PS booster and the 26 GeV PS
title_full Study of emittance blow-up sources between the PS booster and the 26 GeV PS
title_fullStr Study of emittance blow-up sources between the PS booster and the 26 GeV PS
title_full_unstemmed Study of emittance blow-up sources between the PS booster and the 26 GeV PS
title_short Study of emittance blow-up sources between the PS booster and the 26 GeV PS
title_sort study of emittance blow-up sources between the ps booster and the 26 gev ps
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/371832
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AT lindroosm studyofemittanceblowupsourcesbetweenthepsboosterandthe26gevps
AT martinim studyofemittanceblowupsourcesbetweenthepsboosterandthe26gevps
AT schindlkarlheinz studyofemittanceblowupsourcesbetweenthepsboosterandthe26gevps