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The 5 T Superconducting Undulator for the LHC Synchrotron Radiation Profile Monitor

A synchrotron radiation profile monitor will be used in the LHC to measure the beam profiles from the injection energy of 450 GeV to the nominal energy of 7 TeV. The radiation will be provided by a sequence of two separate magnets: a two-periods superconducting undulator and the beam separation dipo...

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Detalles Bibliográficos
Autores principales: MacCaferri, R, Facchini, M, Jung, R, Tommasini, D, Venturini-Delsolaro, W
Lenguaje:eng
Publicado: 2004
Materias:
Acceso en línea:http://cds.cern.ch/record/788507
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author MacCaferri, R
Facchini, M
Jung, R
Tommasini, D
Venturini-Delsolaro, W
author_facet MacCaferri, R
Facchini, M
Jung, R
Tommasini, D
Venturini-Delsolaro, W
author_sort MacCaferri, R
collection CERN
description A synchrotron radiation profile monitor will be used in the LHC to measure the beam profiles from the injection energy of 450 GeV to the nominal energy of 7 TeV. The radiation will be provided by a sequence of two separate magnets: a two-periods superconducting undulator and the beam separation dipole D3. After a short description of the profile monitor layout, the paper reviews the electromagnetic and mechanical design of the undulator, providing 5 T at 4.5 K in a 60 mm gap with a period of 280 mm and reports on the fabrication and cold test results of a first half period prototype.
id cern-788507
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2004
record_format invenio
spelling cern-7885072023-05-31T13:22:23Zhttp://cds.cern.ch/record/788507engMacCaferri, RFacchini, MJung, RTommasini, DVenturini-Delsolaro, WThe 5 T Superconducting Undulator for the LHC Synchrotron Radiation Profile MonitorAccelerators and Storage RingsA synchrotron radiation profile monitor will be used in the LHC to measure the beam profiles from the injection energy of 450 GeV to the nominal energy of 7 TeV. The radiation will be provided by a sequence of two separate magnets: a two-periods superconducting undulator and the beam separation dipole D3. After a short description of the profile monitor layout, the paper reviews the electromagnetic and mechanical design of the undulator, providing 5 T at 4.5 K in a 60 mm gap with a period of 280 mm and reports on the fabrication and cold test results of a first half period prototype.LHC-Project-Report-731CERN-LHC-Project-Report-731oai:cds.cern.ch:7885072004
spellingShingle Accelerators and Storage Rings
MacCaferri, R
Facchini, M
Jung, R
Tommasini, D
Venturini-Delsolaro, W
The 5 T Superconducting Undulator for the LHC Synchrotron Radiation Profile Monitor
title The 5 T Superconducting Undulator for the LHC Synchrotron Radiation Profile Monitor
title_full The 5 T Superconducting Undulator for the LHC Synchrotron Radiation Profile Monitor
title_fullStr The 5 T Superconducting Undulator for the LHC Synchrotron Radiation Profile Monitor
title_full_unstemmed The 5 T Superconducting Undulator for the LHC Synchrotron Radiation Profile Monitor
title_short The 5 T Superconducting Undulator for the LHC Synchrotron Radiation Profile Monitor
title_sort 5 t superconducting undulator for the lhc synchrotron radiation profile monitor
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/788507
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