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HIE ISOLDE Alignment and monitoring system technical design and project status

In the frame of the HIE ISOLDE project most of the existing ISOLDE REX line will be replaced by a superconducting linac in order to upgrade the energy and intensity of the REX ISOLDE facility at CERN. Beam-physics simulations show that the optimum linac working conditions are obtained when the main...

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Detalles Bibliográficos
Autores principales: Gayde, J C, Kadi, Y, Kautzmann, G, Leclercq, Y, Waniorek, S, Williams, L
Lenguaje:eng
Publicado: 2012
Materias:
Acceso en línea:http://cds.cern.ch/record/1483220
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author Gayde, J C
Kadi, Y
Kautzmann, G
Leclercq, Y
Waniorek, S
Williams, L
author_facet Gayde, J C
Kadi, Y
Kautzmann, G
Leclercq, Y
Waniorek, S
Williams, L
author_sort Gayde, J C
collection CERN
description In the frame of the HIE ISOLDE project most of the existing ISOLDE REX line will be replaced by a superconducting linac in order to upgrade the energy and intensity of the REX ISOLDE facility at CERN. Beam-physics simulations show that the optimum linac working conditions are obtained when the main axes of the active components, RF cavities and solenoid placed inside the cryostats, are aligned and permanently monitored on the REX Nominal Beam Line (NBL) within a precision of 0.3 mm for the cavities and 0.15 mm for the solenoids at one sigma level along directions perpendicular to the beam axis. This paper presents the proposed adjustment and alignment system based on opto-electronic sensors, optics and precise mechanic elements which are used, for some of them, in various non-standard environmental conditions such as high vacuum, cryogenic temperatures.
id cern-1483220
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2012
record_format invenio
spelling cern-14832202019-09-30T06:29:59Zhttp://cds.cern.ch/record/1483220engGayde, J CKadi, YKautzmann, GLeclercq, YWaniorek, SWilliams, LHIE ISOLDE Alignment and monitoring system technical design and project statusAccelerators and Storage RingsIn the frame of the HIE ISOLDE project most of the existing ISOLDE REX line will be replaced by a superconducting linac in order to upgrade the energy and intensity of the REX ISOLDE facility at CERN. Beam-physics simulations show that the optimum linac working conditions are obtained when the main axes of the active components, RF cavities and solenoid placed inside the cryostats, are aligned and permanently monitored on the REX Nominal Beam Line (NBL) within a precision of 0.3 mm for the cavities and 0.15 mm for the solenoids at one sigma level along directions perpendicular to the beam axis. This paper presents the proposed adjustment and alignment system based on opto-electronic sensors, optics and precise mechanic elements which are used, for some of them, in various non-standard environmental conditions such as high vacuum, cryogenic temperatures.CERN-ATS-2012-269oai:cds.cern.ch:14832202012-09-10
spellingShingle Accelerators and Storage Rings
Gayde, J C
Kadi, Y
Kautzmann, G
Leclercq, Y
Waniorek, S
Williams, L
HIE ISOLDE Alignment and monitoring system technical design and project status
title HIE ISOLDE Alignment and monitoring system technical design and project status
title_full HIE ISOLDE Alignment and monitoring system technical design and project status
title_fullStr HIE ISOLDE Alignment and monitoring system technical design and project status
title_full_unstemmed HIE ISOLDE Alignment and monitoring system technical design and project status
title_short HIE ISOLDE Alignment and monitoring system technical design and project status
title_sort hie isolde alignment and monitoring system technical design and project status
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1483220
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AT wanioreks hieisoldealignmentandmonitoringsystemtechnicaldesignandprojectstatus
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