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Normal Conducting Separation Dipoles for the LHC Beam Cleaning Insertions

In the Large Hadron Collider (LHC), two straight sections, IR3 and IR7, will be dedicated to beam cleaning. These cleaning insertions will be equipped with normal conducting magnets. MBW magnets are dipole magnets used to increase the separation of the two beams. They have a core length of 3.4 m and...

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Autores principales: Bidon, S, Gerard, D, Hans, O, Kalbreier, Willi, Kiselev, O, Petrov, V, Protopopov, I V, Pupkov, Yu A, Ramberger, S, de Rijk, G, Ruvinsky, E, Sukhanov, A
Lenguaje:eng
Publicado: 2004
Materias:
Acceso en línea:https://dx.doi.org/10.1109/TASC.2004.829690
http://cds.cern.ch/record/732321
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author Bidon, S
Gerard, D
Hans, O
Kalbreier, Willi
Kiselev, O
Petrov, V
Protopopov, I V
Pupkov, Yu A
Ramberger, S
de Rijk, G
Ruvinsky, E
Sukhanov, A
author_facet Bidon, S
Gerard, D
Hans, O
Kalbreier, Willi
Kiselev, O
Petrov, V
Protopopov, I V
Pupkov, Yu A
Ramberger, S
de Rijk, G
Ruvinsky, E
Sukhanov, A
author_sort Bidon, S
collection CERN
description In the Large Hadron Collider (LHC), two straight sections, IR3 and IR7, will be dedicated to beam cleaning. These cleaning insertions will be equipped with normal conducting magnets. MBW magnets are dipole magnets used to increase the separation of the two beams. They have a core length of 3.4 m and a gap height of 52 mm and will operate at a magnetic field ranging from 0.09 T to 1.53 T. Limitations on the dimensions and total weight of the magnet resulted in a special design with a common yoke for the two beams. The orbits of the two beams will be separated horizontally by a distance between 194 mm and 224 mm in the gap of the magnet. The magnet was designed in collaboration between CERN and BINP. The report presents the main design issues and results of the pre-series acceptance tests including mechanical, electrical and magnetic field measurements.
id cern-732321
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2004
record_format invenio
spelling cern-7323212023-05-31T13:20:08Zdoi:10.1109/TASC.2004.829690http://cds.cern.ch/record/732321engBidon, SGerard, DHans, OKalbreier, WilliKiselev, OPetrov, VProtopopov, I VPupkov, Yu ARamberger, Sde Rijk, GRuvinsky, ESukhanov, ANormal Conducting Separation Dipoles for the LHC Beam Cleaning InsertionsAccelerators and Storage RingsIn the Large Hadron Collider (LHC), two straight sections, IR3 and IR7, will be dedicated to beam cleaning. These cleaning insertions will be equipped with normal conducting magnets. MBW magnets are dipole magnets used to increase the separation of the two beams. They have a core length of 3.4 m and a gap height of 52 mm and will operate at a magnetic field ranging from 0.09 T to 1.53 T. Limitations on the dimensions and total weight of the magnet resulted in a special design with a common yoke for the two beams. The orbits of the two beams will be separated horizontally by a distance between 194 mm and 224 mm in the gap of the magnet. The magnet was designed in collaboration between CERN and BINP. The report presents the main design issues and results of the pre-series acceptance tests including mechanical, electrical and magnetic field measurements.LHC-Project-Report-714CERN-LHC-Project-Report-714oai:cds.cern.ch:7323212004-04-02
spellingShingle Accelerators and Storage Rings
Bidon, S
Gerard, D
Hans, O
Kalbreier, Willi
Kiselev, O
Petrov, V
Protopopov, I V
Pupkov, Yu A
Ramberger, S
de Rijk, G
Ruvinsky, E
Sukhanov, A
Normal Conducting Separation Dipoles for the LHC Beam Cleaning Insertions
title Normal Conducting Separation Dipoles for the LHC Beam Cleaning Insertions
title_full Normal Conducting Separation Dipoles for the LHC Beam Cleaning Insertions
title_fullStr Normal Conducting Separation Dipoles for the LHC Beam Cleaning Insertions
title_full_unstemmed Normal Conducting Separation Dipoles for the LHC Beam Cleaning Insertions
title_short Normal Conducting Separation Dipoles for the LHC Beam Cleaning Insertions
title_sort normal conducting separation dipoles for the lhc beam cleaning insertions
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1109/TASC.2004.829690
http://cds.cern.ch/record/732321
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