Author:
Zhang Liang,Donaldson Craig R.,Clarke Jim,Easton Jack,Robertson Craig W.,Whyte Colin G.,Cross Adrian W.
Abstract
AbstractMicrowave undulators (MUs) have great potential to be an alternative solution to permanent magnet undulators in a free electron laser (FEL) when shorter undulator periods are required. In this paper, the factors that affect the choice of the high-power drive sources were studied via a Ka-band cavity-type MU with a corrugated waveguide proposed for the CompactLight X-ray FEL. They include the technology of the high-power vacuum electronic devices, the quality factor of the MU cavity that was demonstrated by prototyping a short section of the MU structure, and the beam dynamic study of the electrons’ trajectories inside the MU. It showed that at high beam energy, a high-power oscillator is feasible to be used as the drive source. At low beam energy, the maximum transverse drift distance becomes larger therefore an amplifier has to be used to minimize the drift distance of the electrons by controlling the injection phase.
Funder
Horizon 2020 Framework Programme
Science and Technology Facilities Council
Royal Society
Publisher
Springer Science and Business Media LLC
Cited by
1 articles.
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1. Microwave Undulator to Generate Short-wavelength FEL Radiation;2022 15th UK-Europe-China Workshop on Millimetre-Waves and Terahertz Technologies (UCMMT);2022-10-17