Chaitanya Kumar S, Zawilski K T, Schunemann P G, Ebrahim-Zadeh M
Opt Lett. 2017 Sep 15;42(18):3606-3609. doi: 10.1364/OL.42.003606.
We report a high-repetition-rate picosecond optical parametric oscillator (OPO) based on CdSiP (CSP) that is synchronously pumped by an Yb-fiber laser at 1064 nm and provides high average power in the deep-infrared (deep-IR) at 79.5 MHz. The OPO is tunable across 6205-6710 nm in the idler, providing as much as 105 mW of average power at 6205 nm and >55 mW over nearly the entire tuning range. The deep-IR idler output exhibits passive power stability better than 2.3% rms over 12 h in good beam quality. The near-IR signal pulses from the OPO have a Gaussian pulse duration of ∼19 ps, measured at 1284 nm. We have investigated the temperature tuning characteristics of the OPO and compared the data with the theoretical calculations using the most recent Sellmeier equations and thermo-optic coefficients for the crystal. To the best of our knowledge, this is the first picosecond OPO based on CSP operating at MHz repetition rates.
我们报道了一种基于CdSiP(CSP)的高重复率皮秒光参量振荡器(OPO),它由1064 nm的Yb光纤激光器同步泵浦,在79.5 MHz的频率下提供深红外(deep-IR)高平均功率。该OPO闲频光在6205 - 6710 nm范围内可调谐,在6205 nm处可提供高达105 mW的平均功率,并且在几乎整个调谐范围内平均功率大于55 mW。深红外闲频光输出在12小时内呈现出优于2.3%均方根误差(rms)的被动功率稳定性,光束质量良好。OPO产生的近红外信号脉冲在1284 nm处测量得到的高斯脉冲持续时间约为19 ps。我们研究了该OPO的温度调谐特性,并将数据与使用晶体最新Sellmeier方程和热光系数的理论计算结果进行了比较。据我们所知,这是首个基于CSP且工作在MHz重复频率的皮秒OPO。