Physical Review Accelerators and Beams (Oct 2016)

Systematical study on superconducting radio frequency elliptic cavity shapes applicable to future high energy accelerators and energy recovery linacs

  • Valery Shemelin,
  • Shahnam Gorgi Zadeh,
  • Johann Heller,
  • Ursula van Rienen

DOI
https://doi.org/10.1103/PhysRevAccelBeams.19.102002
Journal volume & issue
Vol. 19, no. 10
p. 102002

Abstract

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Elliptic cavities at medium- and high-β range are receiving broader use in the particle accelerator applications. Optimizing the shape of these cavities is a complex and demanding process. In this paper we propose an optimization approach to minimize the ratio of peak magnetic field to the acceleration field H_{pk}/E_{acc} while keeping the ratio of peak surface electric field to the accelerating field E_{pk}/E_{acc}, aperture radius and wall slope angle α at some permitted values. We show that it is possible to substantially vary the cavity geometry without violating the constraints or deteriorating the objective of the optimization. This gives us freedom in designing the geometry to overcome problems such as multipactor while maintaining the minimal H_{pk}/E_{acc}. The optimization is then performed to find a set of optimized geometries with minimum H_{pk}/E_{acc} for different β’s ranging from 0.4 to 1, different peak surface electric fields, wall slope angles and aperture radii. These data could be generally used as a suitable starting point in designing elliptic cavities.