Opt Lett. 2018 Jul 15;43(14):3381-3384. doi: 10.1364/OL.43.003381.
We demonstrate the generation of 2.3 mJ, 88 fs, 2.5 μm laser pulses at 1 kHz repetition rate from a three-stage chirped pulse amplifier employing Cr:ZnSe crystals as the active gain media. 5 μJ seed of the amplifier is obtained via intrapulse difference frequency generation in a bismuth triborate (BIBO) crystal from spectrally broadened Ti:Sapphire amplifier output. A multi-pass amplifier followed by two single-pass amplifiers pumped by Q-switched Ho:YAG lasers boost the pulse energy to 6.5 mJ, yielding 2.3 mJ, 88 fs pulses upon pulse compression. Our results show the highest peak power at 2.5 μm with 1 kHz repetition rate. Such a laser will be a powerful source for studying strong-field physics and extending high-harmonic generation towards the keV region.
我们展示了一种基于三程啁啾脉冲放大(CPA)技术的 2.3mJ、88fs、2.5μm 激光脉冲的产生,该系统采用 Cr:ZnSe 晶体作为主动增益介质,重复频率为 1kHz。5μJ 的种子光通过腔内的双色硼酸钡(BIBO)晶体的光频梳产生,种子光由光谱展宽的钛宝石放大器输出。多程放大和两级单程放大系统由调 Q Ho:YAG 激光器泵浦,将脉冲能量提升至 6.5mJ,经过脉冲压缩后得到 2.3mJ、88fs 的脉冲。我们的实验结果在 2.5μm 波段获得了目前为止重复频率为 1kHz 的最高峰值功率。这种激光将成为研究强场物理和将高次谐波产生拓展到 keV 区域的有力工具。