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MQXFA Final Design Report
The MQXFA Quadrupole magnets will be installed in High Luminosity LHC to form the Q1 and Q3 inner triplet optical elements in front of the interaction points 1 (ATLAS) and 5 (CMS). A pair of MQXFA units is assembled in a stainless steel helium vessel, including the end domes, to make the Q1 Cold Mas...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Lenguaje: | eng |
Publicado: |
2022
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Materias: | |
Acceso en línea: | http://cds.cern.ch/record/2853494 |
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author | Ambrosio, Giorgio Amm, Kathleen Anerella, Mike Apollinari, Giorgio Baldini, Maria Yahia, Anis Ben Blowers, James Carcagno, Ruben Cheng, Daniel Chlachidze, Guram Cooley, Lance Feher, Sandor Ferracin, Paolo Hocker, Henry Bermudez, Susana Izquierdo Joshi, Piyush Lombardo, Vito Marinozzi, Vittorio Muratore, Joseph Naus, Michael Nobrega, Fred Pan, Heng Parker, Marcellus Pong, Ian Prestemon, Soren Ravaioli, Emmanuele Ray, Katherine L. Sabbi, GianLuca Schmalzle, Jesse Todesco, Ezio Turenne, Melanie Yu, Miao |
author_facet | Ambrosio, Giorgio Amm, Kathleen Anerella, Mike Apollinari, Giorgio Baldini, Maria Yahia, Anis Ben Blowers, James Carcagno, Ruben Cheng, Daniel Chlachidze, Guram Cooley, Lance Feher, Sandor Ferracin, Paolo Hocker, Henry Bermudez, Susana Izquierdo Joshi, Piyush Lombardo, Vito Marinozzi, Vittorio Muratore, Joseph Naus, Michael Nobrega, Fred Pan, Heng Parker, Marcellus Pong, Ian Prestemon, Soren Ravaioli, Emmanuele Ray, Katherine L. Sabbi, GianLuca Schmalzle, Jesse Todesco, Ezio Turenne, Melanie Yu, Miao |
author_sort | Ambrosio, Giorgio |
collection | CERN |
description | The MQXFA Quadrupole magnets will be installed in High Luminosity LHC to form the Q1 and Q3 inner triplet optical elements in front of the interaction points 1 (ATLAS) and 5 (CMS). A pair of MQXFA units is assembled in a stainless steel helium vessel, including the end domes, to make the Q1 Cold Mass or the Q3 Cold Mass. The US HL LHC Accelerator Upgrade Project* is responsible for the design, manufacturing and test of the Q1/Q3 Cold Masses and the complete MQXFA magnets. CERN provides the cryostat components and is responsible for integration and installation in HL LHC. The MQXFA quadrupoles have 150 mm aperture, 4.2 m magnetic length, nominal gradient of 132.2 T/m, and coil peak field of 11.3 T. They use Nb_3Sn conductor and a support structure made of segmented aluminum shells pre-loaded by using bladders and keys. This report presents the final design of the MQXFA quadrupole magnets. *Supported by the U.S. Department of Energy, Office of Science, Office of High Energy Physics |
id | cern-2853494 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2022 |
record_format | invenio |
spelling | cern-28534942023-09-29T02:20:53Zhttp://cds.cern.ch/record/2853494engAmbrosio, GiorgioAmm, KathleenAnerella, MikeApollinari, GiorgioBaldini, MariaYahia, Anis BenBlowers, JamesCarcagno, RubenCheng, DanielChlachidze, GuramCooley, LanceFeher, SandorFerracin, PaoloHocker, HenryBermudez, Susana IzquierdoJoshi, PiyushLombardo, VitoMarinozzi, VittorioMuratore, JosephNaus, MichaelNobrega, FredPan, HengParker, MarcellusPong, IanPrestemon, SorenRavaioli, EmmanueleRay, Katherine L.Sabbi, GianLucaSchmalzle, JesseTodesco, EzioTurenne, MelanieYu, MiaoMQXFA Final Design Reportphysics.acc-phAccelerators and Storage RingsThe MQXFA Quadrupole magnets will be installed in High Luminosity LHC to form the Q1 and Q3 inner triplet optical elements in front of the interaction points 1 (ATLAS) and 5 (CMS). A pair of MQXFA units is assembled in a stainless steel helium vessel, including the end domes, to make the Q1 Cold Mass or the Q3 Cold Mass. The US HL LHC Accelerator Upgrade Project* is responsible for the design, manufacturing and test of the Q1/Q3 Cold Masses and the complete MQXFA magnets. CERN provides the cryostat components and is responsible for integration and installation in HL LHC. The MQXFA quadrupoles have 150 mm aperture, 4.2 m magnetic length, nominal gradient of 132.2 T/m, and coil peak field of 11.3 T. They use Nb_3Sn conductor and a support structure made of segmented aluminum shells pre-loaded by using bladders and keys. This report presents the final design of the MQXFA quadrupole magnets. *Supported by the U.S. Department of Energy, Office of Science, Office of High Energy PhysicsarXiv:2203.06723FERMILAB-TM-2773-TDUS-HiLumi-doc-948oai:cds.cern.ch:28534942022-03-13 |
spellingShingle | physics.acc-ph Accelerators and Storage Rings Ambrosio, Giorgio Amm, Kathleen Anerella, Mike Apollinari, Giorgio Baldini, Maria Yahia, Anis Ben Blowers, James Carcagno, Ruben Cheng, Daniel Chlachidze, Guram Cooley, Lance Feher, Sandor Ferracin, Paolo Hocker, Henry Bermudez, Susana Izquierdo Joshi, Piyush Lombardo, Vito Marinozzi, Vittorio Muratore, Joseph Naus, Michael Nobrega, Fred Pan, Heng Parker, Marcellus Pong, Ian Prestemon, Soren Ravaioli, Emmanuele Ray, Katherine L. Sabbi, GianLuca Schmalzle, Jesse Todesco, Ezio Turenne, Melanie Yu, Miao MQXFA Final Design Report |
title | MQXFA Final Design Report |
title_full | MQXFA Final Design Report |
title_fullStr | MQXFA Final Design Report |
title_full_unstemmed | MQXFA Final Design Report |
title_short | MQXFA Final Design Report |
title_sort | mqxfa final design report |
topic | physics.acc-ph Accelerators and Storage Rings |
url | http://cds.cern.ch/record/2853494 |
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