Alessi David A, Rosso Paul A, Nguyen Hoang T, Aasen Michael D, Britten Jerald A, Haefner Constantin
Opt Express. 2016 Dec 26;24(26):30015-30023. doi: 10.1364/OE.24.030015.
Laser energy absorption and subsequent heat removal from diffraction gratings in chirped pulse compressors poses a significant challenge in high repetition rate, high peak power laser development. In order to understand the average power limitations, we have modeled the time-resolved thermo-mechanical properties of current and advanced diffraction gratings. We have also developed and demonstrated a technique of actively cooling Petawatt scale, gold compressor gratings to operate at 600W of average power - a 15x increase over the highest average power petawatt laser currently in operation. Combining this technique with low absorption multilayer dielectric gratings developed in our group would enable pulse compressors for petawatt peak power lasers operating at average powers well above 40kW.
在啁啾脉冲压缩器中,激光能量吸收以及随后从衍射光栅移除热量,对高重复率、高峰值功率激光的发展构成了重大挑战。为了理解平均功率限制,我们对当前和先进衍射光栅的时间分辨热机械特性进行了建模。我们还开发并展示了一种主动冷却拍瓦级金压缩光栅的技术,使其能够在600瓦平均功率下运行,这比目前运行的最高平均功率拍瓦激光提高了15倍。将该技术与我们团队开发的低吸收多层介质光栅相结合,将使拍瓦峰值功率激光器的脉冲压缩器能够在远高于40千瓦的平均功率下运行。