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Design of a 56-GJ Twin Solenoid and Dipoles Detector Magnet System for the Future Circular Collider
An aggressive low-mass and high-stress design of a very large detector magnet assembly for the Future Circular Collider (FCC-hh), consisting of a “twin solenoid” and two dipoles, is presented. The twin solenoid features two concentric solenoids. The inner solenoid provides 6 T over a free bore of 12...
Autores principales: | , , , , , , , , , , , |
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Lenguaje: | eng |
Publicado: |
2016
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1109/TASC.2016.2528988 http://cds.cern.ch/record/2261960 |
_version_ | 1780954113466433536 |
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author | Mentink, Matthias Dudarev, Alexey Pais Da Silva, Helder Filipe Berriaud, Christophe Paul Rolando, Gabriella Pots, Rosalinde Cure, Benoit Gaddi, Andrea Klyukhin, Vyacheslav Gerwig, Hubert Wagner, Udo Ten Kate, Herman |
author_facet | Mentink, Matthias Dudarev, Alexey Pais Da Silva, Helder Filipe Berriaud, Christophe Paul Rolando, Gabriella Pots, Rosalinde Cure, Benoit Gaddi, Andrea Klyukhin, Vyacheslav Gerwig, Hubert Wagner, Udo Ten Kate, Herman |
author_sort | Mentink, Matthias |
collection | CERN |
description | An aggressive low-mass and high-stress design of a very large detector magnet assembly for the Future Circular Collider (FCC-hh), consisting of a “twin solenoid” and two dipoles, is presented. The twin solenoid features two concentric solenoids. The inner solenoid provides 6 T over a free bore of 12 m and a length of 20 m, enclosing the inner particle trackers and electron and hadron calorimeters. The outer solenoid reduces the stray field of the inner solenoid and provides additional bending power for high-quality muon tracking. Dipoles are included, providing 10 T · m of bending power in a 6-m mean free bore covering the forward directions for η ≥ 2.5 particles. The overall length of this magnet assembly is 43 m. The presence of several separate magnets in the system presents a challenge in terms of forces and torques acting between them. A rigid support structure, part of the cold mass, holds the inner and outer solenoids of the twin solenoid in place. The dipoles are equipped with lateral coils so that the net force and torque are reduced to zero. The second challenge is the substantial conductor and support structure mass used for containing the magnetic pressure. A doped aluminum stabilized and reinforced conductor is proposed, allowing minimal overall mass of the system. The result is a system consisting of a 53-GJ twin solenoid and two 1.5-GJ dipoles. The cold mass and the vacuum vessel mass of the twin solenoid are 3.2 and 2.4 kt, respectively; and the dipole cold mass weighs 0.38 kt. Various properties of the magnet system are discussed such as magnetic, mechanical and thermal properties, quench behavior, and assembly. |
id | oai-inspirehep.net-1479342 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2016 |
record_format | invenio |
spelling | oai-inspirehep.net-14793422019-09-30T06:29:59Zdoi:10.1109/TASC.2016.2528988http://cds.cern.ch/record/2261960engMentink, MatthiasDudarev, AlexeyPais Da Silva, Helder FilipeBerriaud, Christophe PaulRolando, GabriellaPots, RosalindeCure, BenoitGaddi, AndreaKlyukhin, VyacheslavGerwig, HubertWagner, UdoTen Kate, HermanDesign of a 56-GJ Twin Solenoid and Dipoles Detector Magnet System for the Future Circular ColliderAccelerators and Storage RingsAn aggressive low-mass and high-stress design of a very large detector magnet assembly for the Future Circular Collider (FCC-hh), consisting of a “twin solenoid” and two dipoles, is presented. The twin solenoid features two concentric solenoids. The inner solenoid provides 6 T over a free bore of 12 m and a length of 20 m, enclosing the inner particle trackers and electron and hadron calorimeters. The outer solenoid reduces the stray field of the inner solenoid and provides additional bending power for high-quality muon tracking. Dipoles are included, providing 10 T · m of bending power in a 6-m mean free bore covering the forward directions for η ≥ 2.5 particles. The overall length of this magnet assembly is 43 m. The presence of several separate magnets in the system presents a challenge in terms of forces and torques acting between them. A rigid support structure, part of the cold mass, holds the inner and outer solenoids of the twin solenoid in place. The dipoles are equipped with lateral coils so that the net force and torque are reduced to zero. The second challenge is the substantial conductor and support structure mass used for containing the magnetic pressure. A doped aluminum stabilized and reinforced conductor is proposed, allowing minimal overall mass of the system. The result is a system consisting of a 53-GJ twin solenoid and two 1.5-GJ dipoles. The cold mass and the vacuum vessel mass of the twin solenoid are 3.2 and 2.4 kt, respectively; and the dipole cold mass weighs 0.38 kt. Various properties of the magnet system are discussed such as magnetic, mechanical and thermal properties, quench behavior, and assembly.oai:inspirehep.net:14793422016 |
spellingShingle | Accelerators and Storage Rings Mentink, Matthias Dudarev, Alexey Pais Da Silva, Helder Filipe Berriaud, Christophe Paul Rolando, Gabriella Pots, Rosalinde Cure, Benoit Gaddi, Andrea Klyukhin, Vyacheslav Gerwig, Hubert Wagner, Udo Ten Kate, Herman Design of a 56-GJ Twin Solenoid and Dipoles Detector Magnet System for the Future Circular Collider |
title | Design of a 56-GJ Twin Solenoid and Dipoles Detector Magnet System for the Future Circular Collider |
title_full | Design of a 56-GJ Twin Solenoid and Dipoles Detector Magnet System for the Future Circular Collider |
title_fullStr | Design of a 56-GJ Twin Solenoid and Dipoles Detector Magnet System for the Future Circular Collider |
title_full_unstemmed | Design of a 56-GJ Twin Solenoid and Dipoles Detector Magnet System for the Future Circular Collider |
title_short | Design of a 56-GJ Twin Solenoid and Dipoles Detector Magnet System for the Future Circular Collider |
title_sort | design of a 56-gj twin solenoid and dipoles detector magnet system for the future circular collider |
topic | Accelerators and Storage Rings |
url | https://dx.doi.org/10.1109/TASC.2016.2528988 http://cds.cern.ch/record/2261960 |
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