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Development of MQXF: The Nb$_{3}$Sn Low-$\beta$ Quadrupole for the HiLumi LHC

The High Luminosity (HiLumi) Large Hadron Collider (LHC) project has, as the main objective, to increase the LHC peak luminosity by a factor five and the integrated luminosity by a factor ten. This goal will be achieved mainly with a new interaction region layout, which will allow a stronger focusin...

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Autores principales: Ferracin, P, Ambrosio, G, Anerella, M, Ballarino, A, Bajas, H, Bajko, M, Bordini, B, Bossert, R, Cheng, D W, Dietderich, D R, Chlachidze, G, Cooley, L, Felice, H, Ghosh, A, Hafalia, R, Holik, E, Izquierdo Bermudez, S, Fessia, P, Grosclaude, P, Guinchard, M, Juchno, M, Krave, S, Lackner, F, Marchevsky, M, Marinozzi, V, Nobrega, F, Oberli, L, Pan, H, Perez, J C, Prin, H, Rysti, J, Rochepault, E, Sabbi, G, Salmi, T, Schmalzle, J, Sorbi, M, Sequeira Tavares, S, Todesco, E, Wanderer, P, Wang, X, Yu, M
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:https://dx.doi.org/10.1109/TASC.2015.2510508
http://cds.cern.ch/record/2262861
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author Ferracin, P
Ambrosio, G
Anerella, M
Ballarino, A
Bajas, H
Bajko, M
Bordini, B
Bossert, R
Cheng, D W
Dietderich, D R
Chlachidze, G
Cooley, L
Felice, H
Ghosh, A
Hafalia, R
Holik, E
Izquierdo Bermudez, S
Fessia, P
Grosclaude, P
Guinchard, M
Juchno, M
Krave, S
Lackner, F
Marchevsky, M
Marinozzi, V
Nobrega, F
Oberli, L
Pan, H
Perez, J C
Prin, H
Rysti, J
Rochepault, E
Sabbi, G
Salmi, T
Schmalzle, J
Sorbi, M
Sequeira Tavares, S
Todesco, E
Wanderer, P
Wang, X
Yu, M
author_facet Ferracin, P
Ambrosio, G
Anerella, M
Ballarino, A
Bajas, H
Bajko, M
Bordini, B
Bossert, R
Cheng, D W
Dietderich, D R
Chlachidze, G
Cooley, L
Felice, H
Ghosh, A
Hafalia, R
Holik, E
Izquierdo Bermudez, S
Fessia, P
Grosclaude, P
Guinchard, M
Juchno, M
Krave, S
Lackner, F
Marchevsky, M
Marinozzi, V
Nobrega, F
Oberli, L
Pan, H
Perez, J C
Prin, H
Rysti, J
Rochepault, E
Sabbi, G
Salmi, T
Schmalzle, J
Sorbi, M
Sequeira Tavares, S
Todesco, E
Wanderer, P
Wang, X
Yu, M
author_sort Ferracin, P
collection CERN
description The High Luminosity (HiLumi) Large Hadron Collider (LHC) project has, as the main objective, to increase the LHC peak luminosity by a factor five and the integrated luminosity by a factor ten. This goal will be achieved mainly with a new interaction region layout, which will allow a stronger focusing of the colliding beams. The target will be to reduce the beam size in the interaction points by a factor of two, which requires doubling the aperture of the low-β (or inner triplet) quadrupole magnets. The use of Nb$_{3}$Sn superconducting material and, as a result, the possibility of operating at magnetic field levels in the windings higher than 11 T will limit the increase in length of these quadrupoles, called MQXF, to acceptable levels. After the initial design phase, where the key parameters were chosen and the magnet's conceptual design finalized, the MQXF project, a joint effort between the U.S. LHC Accelerator Research Program and the Conseil Européen pour la Recherche Nucléaire (CERN), has now entered the construction and test phase of the short models. Concurrently, the preparation for the development of the full-length prototypes has been initiated. This paper will provide an overview of the project status, describing and reporting on the performance of the superconducting material, the lessons learnt during the fabrication of superconducting coils and support structure, and the fine tuning of the magnet design in view of the start of the prototyping phase.
id oai-inspirehep.net-1423497
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2016
record_format invenio
spelling oai-inspirehep.net-14234972020-08-28T12:57:46Zdoi:10.1109/TASC.2015.2510508http://cds.cern.ch/record/2262861engFerracin, PAmbrosio, GAnerella, MBallarino, ABajas, HBajko, MBordini, BBossert, RCheng, D WDietderich, D RChlachidze, GCooley, LFelice, HGhosh, AHafalia, RHolik, EIzquierdo Bermudez, SFessia, PGrosclaude, PGuinchard, MJuchno, MKrave, SLackner, FMarchevsky, MMarinozzi, VNobrega, FOberli, LPan, HPerez, J CPrin, HRysti, JRochepault, ESabbi, GSalmi, TSchmalzle, JSorbi, MSequeira Tavares, STodesco, EWanderer, PWang, XYu, MDevelopment of MQXF: The Nb$_{3}$Sn Low-$\beta$ Quadrupole for the HiLumi LHCAccelerators and Storage RingsThe High Luminosity (HiLumi) Large Hadron Collider (LHC) project has, as the main objective, to increase the LHC peak luminosity by a factor five and the integrated luminosity by a factor ten. This goal will be achieved mainly with a new interaction region layout, which will allow a stronger focusing of the colliding beams. The target will be to reduce the beam size in the interaction points by a factor of two, which requires doubling the aperture of the low-β (or inner triplet) quadrupole magnets. The use of Nb$_{3}$Sn superconducting material and, as a result, the possibility of operating at magnetic field levels in the windings higher than 11 T will limit the increase in length of these quadrupoles, called MQXF, to acceptable levels. After the initial design phase, where the key parameters were chosen and the magnet's conceptual design finalized, the MQXF project, a joint effort between the U.S. LHC Accelerator Research Program and the Conseil Européen pour la Recherche Nucléaire (CERN), has now entered the construction and test phase of the short models. Concurrently, the preparation for the development of the full-length prototypes has been initiated. This paper will provide an overview of the project status, describing and reporting on the performance of the superconducting material, the lessons learnt during the fabrication of superconducting coils and support structure, and the fine tuning of the magnet design in view of the start of the prototyping phase.FERMILAB-PUB-16-048-TDoai:inspirehep.net:14234972016
spellingShingle Accelerators and Storage Rings
Ferracin, P
Ambrosio, G
Anerella, M
Ballarino, A
Bajas, H
Bajko, M
Bordini, B
Bossert, R
Cheng, D W
Dietderich, D R
Chlachidze, G
Cooley, L
Felice, H
Ghosh, A
Hafalia, R
Holik, E
Izquierdo Bermudez, S
Fessia, P
Grosclaude, P
Guinchard, M
Juchno, M
Krave, S
Lackner, F
Marchevsky, M
Marinozzi, V
Nobrega, F
Oberli, L
Pan, H
Perez, J C
Prin, H
Rysti, J
Rochepault, E
Sabbi, G
Salmi, T
Schmalzle, J
Sorbi, M
Sequeira Tavares, S
Todesco, E
Wanderer, P
Wang, X
Yu, M
Development of MQXF: The Nb$_{3}$Sn Low-$\beta$ Quadrupole for the HiLumi LHC
title Development of MQXF: The Nb$_{3}$Sn Low-$\beta$ Quadrupole for the HiLumi LHC
title_full Development of MQXF: The Nb$_{3}$Sn Low-$\beta$ Quadrupole for the HiLumi LHC
title_fullStr Development of MQXF: The Nb$_{3}$Sn Low-$\beta$ Quadrupole for the HiLumi LHC
title_full_unstemmed Development of MQXF: The Nb$_{3}$Sn Low-$\beta$ Quadrupole for the HiLumi LHC
title_short Development of MQXF: The Nb$_{3}$Sn Low-$\beta$ Quadrupole for the HiLumi LHC
title_sort development of mqxf: the nb$_{3}$sn low-$\beta$ quadrupole for the hilumi lhc
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1109/TASC.2015.2510508
http://cds.cern.ch/record/2262861
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