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Scenarios for the ATF2 Ultra-Low Betas Proposal

The currentATF2 Ultra-Low beta proposalwas designed to achieve 20nm vertical IP beam size without considering the multipolar components of the FD magnets. In this paper we describe different scenarios that avoid the detrimental effect of these multipolar errors to the beam size at the interaction po...

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Detalles Bibliográficos
Autores principales: Marin, E, Tomas, R, Parker, B, Bambade, P, Kuroda, S, Okugi, T, Tauchi, T, Terunuma, N, Urakawa, J, Seryi, A, White, G, Woodley, M
Lenguaje:eng
Publicado: 2010
Materias:
Acceso en línea:http://cds.cern.ch/record/1269892
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author Marin, E
Tomas, R
Parker, B
Bambade, P
Kuroda, S
Okugi, T
Tauchi, T
Terunuma, N
Urakawa, J
Seryi, A
White, G
Woodley, M
author_facet Marin, E
Tomas, R
Parker, B
Bambade, P
Kuroda, S
Okugi, T
Tauchi, T
Terunuma, N
Urakawa, J
Seryi, A
White, G
Woodley, M
author_sort Marin, E
collection CERN
description The currentATF2 Ultra-Low beta proposalwas designed to achieve 20nm vertical IP beam size without considering the multipolar components of the FD magnets. In this paper we describe different scenarios that avoid the detrimental effect of these multipolar errors to the beam size at the interaction point (IP). The simplest approach consists in modifying the optics, but other solutions are studied as the introduction of super-conductingwigglers to reduce the emittance or the replacement of the normal-conducting focusing quadrupole in the Final Doublet (NC-QF1FF) with a super-conducting quadrupole one (SC-QF1FF). These are fully addressed in the paper.
id cern-1269892
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2010
record_format invenio
spelling cern-12698922023-07-20T15:01:22Zhttp://cds.cern.ch/record/1269892engMarin, ETomas, RParker, BBambade, PKuroda, SOkugi, TTauchi, TTerunuma, NUrakawa, JSeryi, AWhite, GWoodley, MScenarios for the ATF2 Ultra-Low Betas ProposalAccelerators and Storage RingsThe currentATF2 Ultra-Low beta proposalwas designed to achieve 20nm vertical IP beam size without considering the multipolar components of the FD magnets. In this paper we describe different scenarios that avoid the detrimental effect of these multipolar errors to the beam size at the interaction point (IP). The simplest approach consists in modifying the optics, but other solutions are studied as the introduction of super-conductingwigglers to reduce the emittance or the replacement of the normal-conducting focusing quadrupole in the Final Doublet (NC-QF1FF) with a super-conducting quadrupole one (SC-QF1FF). These are fully addressed in the paper.CERN-ATS-2010-062CLIC-Note-837oai:cds.cern.ch:12698922010-06-04
spellingShingle Accelerators and Storage Rings
Marin, E
Tomas, R
Parker, B
Bambade, P
Kuroda, S
Okugi, T
Tauchi, T
Terunuma, N
Urakawa, J
Seryi, A
White, G
Woodley, M
Scenarios for the ATF2 Ultra-Low Betas Proposal
title Scenarios for the ATF2 Ultra-Low Betas Proposal
title_full Scenarios for the ATF2 Ultra-Low Betas Proposal
title_fullStr Scenarios for the ATF2 Ultra-Low Betas Proposal
title_full_unstemmed Scenarios for the ATF2 Ultra-Low Betas Proposal
title_short Scenarios for the ATF2 Ultra-Low Betas Proposal
title_sort scenarios for the atf2 ultra-low betas proposal
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1269892
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