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The Cryogenics of the LHC Interaction Region Final Focus Superconducting Magnets

The LHC interaction region final focus magnets will include four superconducting quadrupoles cooled with pressurized, static superfluid helium at 1.9 K. The heat absorbed in pressurized He II, which m ay be more than 10 Watts per meter due to dynamic heating from the particle beam halo, will be tran...

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Detalles Bibliográficos
Autores principales: Byrns, R A, Huang, Y, Kerby, J S, Lebrun, P, Morrison, L, Nicol, T H, Peterson, T, Trant, R, Van Weelderen, R, Zbasnik, J
Lenguaje:eng
Publicado: 1998
Materias:
Acceso en línea:http://cds.cern.ch/record/365289
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author Byrns, R A
Huang, Y
Kerby, J S
Lebrun, P
Morrison, L
Nicol, T H
Peterson, T
Trant, R
Van Weelderen, R
Zbasnik, J
author_facet Byrns, R A
Huang, Y
Kerby, J S
Lebrun, P
Morrison, L
Nicol, T H
Peterson, T
Trant, R
Van Weelderen, R
Zbasnik, J
author_sort Byrns, R A
collection CERN
description The LHC interaction region final focus magnets will include four superconducting quadrupoles cooled with pressurized, static superfluid helium at 1.9 K. The heat absorbed in pressurized He II, which m ay be more than 10 Watts per meter due to dynamic heating from the particle beam halo, will be transported to saturated He II at 1.8 K and removed by the 16 mbar vapor. This paper discusses the concep tual design for the cryogenics of the interaction region final focus superconducting magnets and the integration of this magnet system into the overall LHC cryogenic system.
id cern-365289
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1998
record_format invenio
spelling cern-3652892023-05-31T13:22:03Zhttp://cds.cern.ch/record/365289engByrns, R AHuang, YKerby, J SLebrun, PMorrison, LNicol, T HPeterson, TTrant, RVan Weelderen, RZbasnik, JThe Cryogenics of the LHC Interaction Region Final Focus Superconducting MagnetsAccelerators and Storage RingsThe LHC interaction region final focus magnets will include four superconducting quadrupoles cooled with pressurized, static superfluid helium at 1.9 K. The heat absorbed in pressurized He II, which m ay be more than 10 Watts per meter due to dynamic heating from the particle beam halo, will be transported to saturated He II at 1.8 K and removed by the 16 mbar vapor. This paper discusses the concep tual design for the cryogenics of the interaction region final focus superconducting magnets and the integration of this magnet system into the overall LHC cryogenic system.LHC-Project-Report-219CERN-LHC-Project-Report-219oai:cds.cern.ch:3652891998-07-31
spellingShingle Accelerators and Storage Rings
Byrns, R A
Huang, Y
Kerby, J S
Lebrun, P
Morrison, L
Nicol, T H
Peterson, T
Trant, R
Van Weelderen, R
Zbasnik, J
The Cryogenics of the LHC Interaction Region Final Focus Superconducting Magnets
title The Cryogenics of the LHC Interaction Region Final Focus Superconducting Magnets
title_full The Cryogenics of the LHC Interaction Region Final Focus Superconducting Magnets
title_fullStr The Cryogenics of the LHC Interaction Region Final Focus Superconducting Magnets
title_full_unstemmed The Cryogenics of the LHC Interaction Region Final Focus Superconducting Magnets
title_short The Cryogenics of the LHC Interaction Region Final Focus Superconducting Magnets
title_sort cryogenics of the lhc interaction region final focus superconducting magnets
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/365289
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