Design of B1pF-A Large Aperture Dipole Magnet for EIC
The design of interaction region (IR) magnets for the Electron Ion Collider (EIC), demands tight boundary conditions on the magnet design given by the high field requirements and the proximity of electron and hadron beams within a common yoke and resultant crosstalk. This article discusses the elect...
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| Published in: | IEEE transactions on applied superconductivity Vol. 34; no. 5; pp. 1 - 5 |
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| Main Authors: | , , , , , , , |
| Format: | Journal Article |
| Language: | English |
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New York
IEEE
01.08.2024
The Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
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| ISSN: | 1051-8223, 1558-2515 |
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| Abstract | The design of interaction region (IR) magnets for the Electron Ion Collider (EIC), demands tight boundary conditions on the magnet design given by the high field requirements and the proximity of electron and hadron beams within a common yoke and resultant crosstalk. This article discusses the electromagnetic design of the superconducting collared magnet B1pF. The magnet will be built as the prototype for several collared magnets (dipoles and quadrupoles) for the hadron beam in the forward direction of the IR. The magnet design is based on a single layer coil with an inner diameter of 300 mm over a slot length of 3 m. The magnet produces an integral field of 10.34 T.m at a current of 11.9 kA to produce a nominal field of about 3.96 T at its center. Given by the common Rutherford cable parameters, the magnet will be used as a baseline for optimization of all the collared magnets. The article further discusses yoke optimizations, quench analysis, coil end design and efforts on fine tuning of field quality. |
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| AbstractList | The design of interaction region (IR) magnets for the Electron Ion Collider (EIC), demands tight boundary conditions on the magnet design given by the high field requirements and the proximity of electron and hadron beams within a common yoke and resultant crosstalk. Here, this article discusses the electromagnetic design of the superconducting collared magnet B1pF. The magnet will be built as the prototype for several collared magnets (dipoles and quadrupoles) for the hadron beam in the forward direction of the IR. The magnet design is based on a single layer coil with an inner diameter of 300 mm over a slot length of 3 m. The magnet produces an integral field of 10.34 T.m at a current of 11.9 kA to produce a nominal field of about 3.96 T at its center. Given by the common Rutherford cable parameters, the magnet will be used as a baseline for optimization of all the collared magnets. The article further discusses yoke optimizations, quench analysis, coil end design and efforts on fine tuning of field quality. The design of interaction region (IR) magnets for the Electron Ion Collider (EIC), demands tight boundary conditions on the magnet design given by the high field requirements and the proximity of electron and hadron beams within a common yoke and resultant crosstalk. This article discusses the electromagnetic design of the superconducting collared magnet B1pF. The magnet will be built as the prototype for several collared magnets (dipoles and quadrupoles) for the hadron beam in the forward direction of the IR. The magnet design is based on a single layer coil with an inner diameter of 300 mm over a slot length of 3 m. The magnet produces an integral field of 10.34 T.m at a current of 11.9 kA to produce a nominal field of about 3.96 T at its center. Given by the common Rutherford cable parameters, the magnet will be used as a baseline for optimization of all the collared magnets. The article further discusses yoke optimizations, quench analysis, coil end design and efforts on fine tuning of field quality. |
| Author | Anerella, Michael Gupta, Ramesh Joshi, Piyush Witte, Holger Kurian, Febin Amm, Kathleen Marinozzi, Vittorio Ambrosio, Giorgio |
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| References | Witte (ref2) ref3 Rossi (ref6) 2004 Witte (ref1) Anerella (ref4) Rodriguez-Mateos (ref7) Gupta (ref5) |
| References_xml | – start-page: 2574 volume-title: Proc. 12th Int. Part. Accel. Conf. ident: ref1 article-title: The interaction region of the electron-ion collider EIC – start-page: 2578 volume-title: Proc. 12th Int. Part. Accel. Conf. ident: ref2 article-title: Overview of the magnets required for the interaction region of the electron-ion collider (EIC) – start-page: 2154 volume-title: Proc. Eur. Part. Accel. Conf. ident: ref7 article-title: Quench heater experiments on the LHC main superconducting magnets – ident: ref3 doi: 10.1109/77.828214 – start-page: 2928 volume-title: Proc. Eur. Part. Accel. Conf. ident: ref5 article-title: Field quality improvements in superconducting magnets for RHIC – volume-title: Proc. Int. Conf. Magnet Technol. ident: ref4 article-title: Mechanical design of the interaction region dipole B1pF for EIC – year: 2004 ident: ref6 article-title: QLASA: A computer code for quench simulation in adiabatic multicoil superconducting windings |
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| Snippet | The design of interaction region (IR) magnets for the Electron Ion Collider (EIC), demands tight boundary conditions on the magnet design given by the high... |
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| SubjectTerms | Accelerator magnets Boundary conditions Coils collared magnet CONDENSED MATTER PHYSICS, SUPERCONDUCTIVITY AND SUPERFLUIDITY Conductors Crosstalk Design optimization Dipoles Electron beams Electron tubes Hadrons Harmonic analysis interaction region large aperture magnet magnet design Magnetic noise Magnetic shielding Magnets Optimization Particle accelerators Particle beams Quadrupoles Superconducting magnets |
| Title | Design of B1pF-A Large Aperture Dipole Magnet for EIC |
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