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High-power narrow-band operation and Raman frequency conversion of an electron-beam pumped krypton excimer laser

机译:电子束泵浦k准分子激光器的大功率窄带工作和拉曼频率转换

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摘要

A Kr excimer laser pumped by a relativistic electron beam has generated high-power output by using a cavity composed of a Si mirror and M/sub g/F/sub 2/ mirror. The threshold gas pressure for laser oscillation is 10 atm, and the maximum output power achieved so far is 6.6 MW at 15 atm. The maximum power is limited by the surface damages on the mirrors. This laser output, oscillating at 145.7 nm, has a spectral width of 0.8 nm (FWHM). Efficient spectral narrowing down to 0.1 nm has been achieved with a 32 degrees apex angle MgF/sub 2/ prism inserted in the cavity giving 3.5 MW peak power at 15 atm of Kr gas pressure. Wavelength conversion by stimulated Raman scattering in high-pressure H/sub 2/ has been demonstrated for efficient extension of the laser wavelength.
机译:相对论电子束泵浦的Kr准分子激光器通过使用由Si镜和M / sub g / F / sub 2 /镜组成的腔产生了高功率输出。激光振荡的阈值气压为10 atm,到目前为止,在15 atm时达到的最大输出功率为6.6 MW。最大功率受反光镜表面损坏的限制。该激光输出在145.7 nm处振荡,光谱宽度为0.8 nm(FWHM)。通过在腔体中插入32度顶角MgF / sub 2 /棱镜,可以实现有效的光谱窄化至0.1 nm,在Kr气压为15 atm时提供3.5 MW峰值功率。已证明在高压H / sub 2 /中通过受激拉曼散射进行波长转换可有效扩展激光波长。

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