In view of the preparation for a post-LHC collider, in 2010 the high-energy physics (HEP) community started to discuss various options, including the use of HTS for very high-field dipoles. Therefore, a small program was begun in Europe that aimed at exploring the possibility of using HTS for accelerator-quality magnets. Based on various EU-funded programs, though at modest lev-els, it has enabled the European community of accelerator magnet research to start getting experi-ence in HTS and address a few issues. The program was based on the use of REBa2Cu3O7−x (REBCO)tapes to form 10 kA Roebel cables to wind small dipoles of 30–40mm aperture in the 5 T range. The dipoles are designed to be later inserted in a background dipole field (in Nb3Sn), to reach eventually a field level in the 16–20T range, beyond the reach of Low Temperature Superconductors (LTS). The program is currently underway: more than 1 km of high-performance tape (Je> 500 A/mm2at 20 T, 4.2 K) has been manufactured and characterized, various 30 m long Roebelcables have been assembled and validated up to 13 kA, a few dipoles have been wound and tested, reaching 4.5 T in stand-alone (while a dipole made from flat race track coils exceeded 5 T using stacked tape cable), and tests in background field are being organized.

HTS Accelerator Magnet and Conductor Development in Europe / L. Rossi, C. Senatore. - In: INSTRUMENTS. - ISSN 2410-390X. - 5:1(2021). [10.3390/instruments5010008]

HTS Accelerator Magnet and Conductor Development in Europe

L. Rossi
Primo
Writing – Original Draft Preparation
;
2021

Abstract

In view of the preparation for a post-LHC collider, in 2010 the high-energy physics (HEP) community started to discuss various options, including the use of HTS for very high-field dipoles. Therefore, a small program was begun in Europe that aimed at exploring the possibility of using HTS for accelerator-quality magnets. Based on various EU-funded programs, though at modest lev-els, it has enabled the European community of accelerator magnet research to start getting experi-ence in HTS and address a few issues. The program was based on the use of REBa2Cu3O7−x (REBCO)tapes to form 10 kA Roebel cables to wind small dipoles of 30–40mm aperture in the 5 T range. The dipoles are designed to be later inserted in a background dipole field (in Nb3Sn), to reach eventually a field level in the 16–20T range, beyond the reach of Low Temperature Superconductors (LTS). The program is currently underway: more than 1 km of high-performance tape (Je> 500 A/mm2at 20 T, 4.2 K) has been manufactured and characterized, various 30 m long Roebelcables have been assembled and validated up to 13 kA, a few dipoles have been wound and tested, reaching 4.5 T in stand-alone (while a dipole made from flat race track coils exceeded 5 T using stacked tape cable), and tests in background field are being organized.
superconductivity; superconducting magnets; HTS; high temperature superconductors; accelerator magnets; high current density HTS; Roebelcables; accelerator magnets; collider magnets;
Settore FIS/01 - Fisica Sperimentale
Settore FIS/04 - Fisica Nucleare e Subnucleare
2021
Article (author)
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/818844
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