Migal E A, Suleimanova D Z, Badikov D V, Potemkin F V
Opt Lett. 2024 Aug 15;49(16):4537-4540. doi: 10.1364/OL.533745.
We report on the development of a tunable (1.5-6.5 µm) femtosecond optical parametric amplifier (OPA) based on a novel, to the best of our knowledge, BaGaGeS (BGGS) crystal with a Cr:Forsterite pumping laser. Total conversion efficiency as high as 28% is achieved in a robust two-stage setup resulting in the generation of a 340-µJ 1.67-µm signal and 100-µJ 4.65-µm idler pulses. A 5-optical-cycles 94-fs 6-µm idler pulses are demonstrated with a propriate dispersion compensation by Ge and GaAs plates. An experimental estimate is given for the effective nonlinearity of a BGGS material, which for our nonlinear process reaches 19.5 pm/V for Type II phase matching. The crystal is additionally tested as a final amplifier in a high-energy OPA, where total output reaches 1.2 mJ with more than 40% conversion efficiency. The demonstrated high nonlinearity, high damage threshold, and chemical stability of the polished surface make BGGS crystal an ideal candidate for the development of high-energy OPAs with multi-millijoule pumping lasers.
我们报道了一种基于据我们所知新型的BaGaGeS(BGGS)晶体与Cr:镁橄榄石泵浦激光器的可调谐(1.5 - 6.5 µm)飞秒光学参量放大器(OPA)的研制情况。在一个稳健的两级装置中实现了高达28%的总转换效率,产生了能量为340 µJ的1.67 µm信号脉冲和能量为100 µJ的4.65 µm闲频脉冲。通过锗和砷化镓板进行适当的色散补偿,展示了5个光周期的94 fs的6 µm闲频脉冲。给出了BGGS材料有效非线性的实验估计值,对于我们的非线性过程,II型相位匹配时其有效非线性达到19.5 pm/V。该晶体还在高能OPA中作为末级放大器进行了测试,在那里总输出达到1.2 mJ,转换效率超过40%。所展示的高非线性、高损伤阈值以及抛光表面的化学稳定性使得BGGS晶体成为利用多毫焦泵浦激光器开发高能OPA的理想候选材料。