Block-Type Nb3Sn Dipole R&D at Texas A&M University

Author:

McIntyre Peter,Sattarov Akhdiyor

Publisher

Springer International Publishing

Reference19 articles.

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2. Assadi S, Breitschopf J, Chavez D et al (2017) Cable-in-conduit dipoles to enable a future hadron collider. IEEE Trans Appl Supercond 27(4):1–5. https://doi.org/10.1109/tasc.2017.2656157

3. Battle C, Blackburn R, Diaczenko N et al (2001) Testing of TAMU1: a single-aperture block-coil dipole. In: Lucas P, Webber S (eds) Proceedings of the 2001 particle accelerator conference (Cat. No.01CH37268), Chicago, 18–22 June 2001, vol 5, pp 3642–3644

4. Benson CP, Holik EF III, Jaisle A et al (2012) Improved capacitive stress transducers for high field superconducting magnets. Advances in cryogenic engineering: transactions of the cryogenic engineering conference—CEC, vol 57. AIP Conf Proc 1434(1):1337–1344. https://doi.org/10.1063/1.4707059

5. Blackburn R, Elliott T, Henchel W et al (2003) Construction of block-coil high-field model dipoles for future hadron colliders. IEEE Trans Appl Supercond 13(2):1355–1357. https://doi.org/10.1109/tasc.2003.812667

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1. >16 T Hybrid Dipole for an LHC Energy Doubler;IEEE Transactions on Applied Superconductivity;2020-06

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