Physical Review Accelerators and Beams (Jan 2016)

Dielectric assist accelerating structure

  • D. Satoh,
  • M. Yoshida,
  • N. Hayashizaki

DOI
https://doi.org/10.1103/PhysRevAccelBeams.19.011302
Journal volume & issue
Vol. 19, no. 1
p. 011302

Abstract

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A higher-order TM_{02n} mode accelerating structure is proposed based on a novel concept of dielectric loaded rf cavities. This accelerating structure consists of ultralow-loss dielectric cylinders and disks with irises which are periodically arranged in a metallic enclosure. Unlike conventional dielectric loaded accelerating structures, most of the rf power is stored in the vacuum space near the beam axis, leading to a significant reduction of the wall loss, much lower than that of conventional normal-conducting linac structures. This allows us to realize an extremely high quality factor and a very high shunt impedance at room temperature. A simulation of a 5 cell prototype design with an existing alumina ceramic indicates an unloaded quality factor of the accelerating mode over 120 000 and a shunt impedance exceeding 650 MΩ/m at room temperature.