Author: Boehm, J.
Paper Title Page
THPAB045 Design of a Short Period Helical Superconducting Undulator 3844
 
  • A.G. Hinton
    STFC/DL, Daresbury, Warrington, Cheshire, United Kingdom
  • J. Boehm, L. Cooper, B. Green, T. Hayler, P. Jeffery, C.P. Macwaters
    STFC/RAL, Chilton, Didcot, Oxon, United Kingdom
  • S. Milward
    DLS, Oxfordshire, United Kingdom
  • B.J.A. Shepherd
    STFC/DL/ASTeC, Daresbury, Warrington, Cheshire, United Kingdom
  • B.J.A. Shepherd
    Cockcroft Institute, Warrington, Cheshire, United Kingdom
 
  Su­per­con­duct­ing tech­nol­ogy pro­vides the pos­si­bil­ity to de­velop short pe­riod, small bore un­du­la­tors that can gen­er­ate much larger mag­netic fields than al­ter­na­tive tech­nolo­gies. This may allow an XFEL with op­ti­mised su­per­con­duct­ing un­du­la­tors to cover a broader range of wave­lengths than tra­di­tional un­du­la­tors. At STFC, we have un­der­taken work to de­sign and build a pro­to­type he­li­cal su­per­con­duct­ing un­du­la­tor (HSCU) mod­ule with pa­ra­me­ters suit­able for use on a fu­ture XFEL fa­cil­ity. This work in­cludes the de­sign of a full 2 m long un­du­la­tor mod­ule, in­clud­ing an un­du­la­tor with 13 mm pe­riod and 5 mm inner wind­ing di­am­e­ter, the sup­port­ing cryo­genic and vac­uum sys­tems re­quired for op­er­a­tion, and quadrupoles, phase shifters and cor­rec­tion mag­nets for use be­tween un­du­la­tor sec­tions. We pre­sent here the mag­netic and me­chan­i­cal de­sign of the HSCU. The choice of un­du­la­tor pa­ra­me­ters and their in­flu­ence on the de­sign is dis­cussed. A turn­around scheme to allow con­tin­u­ous wind­ing of the un­du­la­tor with­out the need for su­per­con­duct­ing joints is also pre­sented. Tech­niques for wind­ing the un­du­la­tor are cur­rently being in­ves­ti­gated and a short pro­to­type will soon be wound and tested.  
DOI • reference for this paper ※ https://doi.org/10.18429/JACoW-IPAC2021-THPAB045  
About • paper received ※ 17 May 2021       paper accepted ※ 18 June 2021       issue date ※ 21 August 2021  
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