Abstract

As reported in previous work (Neil, Proceedings of the 1998 European Particle Accelerator Conference, Stockholm, Sweden, 1998, p. 88; Shinn, in: Free-Electron Laser Challenges, Proceedings of SPIE, vol. 2988, 1997, p. 170), Jefferson Lab is building a free-electron laser capable of generating a continuous wave kilowatt laser beam. The driver-accelerator consists of a superconducting, energy-recovery accelerator. The initial stage of the program was to produce over 100 W of average power with no recirculation. In order to provide maximum gain the initial wavelength was chosen to be 5 μm and the initial beam energy was chosen to be 38.5 MeV. On June 17, 1998, the laser produced 155 W cw power at the laser output with a 98% reflective output coupler. On July 28th, 311 W cw power was obtained using a 90% reflective output coupler. A summary of the commissioning activities to date as well as some novel lasing results will be summarized in this paper. Present work is concentrated on optimizing lasing at 5 μm, obtaining lasing at 3 μm, and commissioning the recirculation transport in preparation for kilowatt lasing this fall.

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