Development of a 4-mirror optical cavity for an inverse Compton scattering experiment in the STF

作者:Shimizu Hirotaka*; Aryshev Alexander; Higashi Yasuo; Honda Yosuke; Urakawa Junji
来源:Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment , 2014, 745: 63-72.
DOI:10.1016/aninta.2.014.01.055

摘要

To obtain high-brightness quasi-monochromatic X-rays via inverse Compton scattering (ICS), an optical cavity for intensifying laser beams was designed and implemented in a new beam line at the KEK Superconducting RF Test Facility (STF) accelerator. The optical cavity adopts a planar configuration consisting of 4 mirrors. This confocal type resonator provides stable laser storage even with a long mirror distance, enabling head-on collision with the electron beams. To overcome the well-known astigmatism problems of the planar-type optical cavity, two forcibly bendable cylindrical mirrors were introduced instead of fiat mirrors. With this new function for laser profile adjustment, an almost round laser profile at the waist point in the accelerator environment was successfully achieved. Estimated waist sizes were 43.7 mu m for the horizontal and 50.8 mu m for the vertical dimensions. The feedback control of this 4-mirror optical cavity worked with a stiff plate supporting all 4 mirrors. 1.7 x 10(3) finesse and 2.8-kW stored power for a 1-ms duration with 5 Hz were achieved.

  • 出版日期2014-5-1