Please use this identifier to cite or link to this item: https://www.um.edu.mt/library/oar/handle/123456789/146079
Title: Record field in a 10 mm-period bulk high-temperature superconducting undulator
Authors: Zhang, Kai
Pirotta, Andrew
Liang, Xiaoyang
Hellmann, Sebastian
Bartkowiak, Marek
Schmidt, Thomas
Dennis, Anthony
Ainslie, Mark
Durrell, John
Calvi, Marco
Keywords: High temperature superconductivity
High temperature superconductors
Gadolinium compounds
Copper alloys
Magnetization
Issue Date: 2023
Publisher: IOP Publishing
Citation: Zhang, K., Pirotta, A., Liang, X., Hellmann, S., Bartkowiak, M., Schmidt, T.,...Calvi, M. (2023). Record field in a 10 mm-period bulk high-temperature superconducting undulator. Superconductor Science and Technology, 36(5), 05LT01.
Abstract: A 10 mm-period, high-temperature superconducting (HTS) undulator consisting of 20 staggered-array GdBa2Cu3O7−x (GdBCO) bulk superconductors has been fabricated and tested successfully. Each GdBCO disk was machined into a half-moon shape with micro-meter accuracy and shrink-fitted into a slotted oxygen-free copper disk which provided pre-stress and effective conduction-cooling. The HTS undulator prototype, consisting of GdBCO disks, copper disks, and CoFe poles fitted in a long copper shell, was field-cooled magnetized in fields of up to 10 T at 10 K. An undulator field of 2.1 T in a 4 mm magnetic gap was obtained. This field is the largest reported yet for the same gap and period length and exceeds the target value of 2 T for the meter-long HTS undulator scheduled for the hard x-ray I-TOMCAT beamline in the Swiss Light Source 2.0. We have demonstrated that bulk superconductor based undulators can provide significantly improved performance over alternative technologies.
URI: https://www.um.edu.mt/library/oar/handle/123456789/146079
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