Wei Junxiong, Chaitanya Kumar S, Ye Hanyu, Devi Kavita, Schunemann Peter G, Ebrahim-Zadeh M
Opt Lett. 2017 Jun 1;42(11):2193-2196. doi: 10.1364/OL.42.002193.
We report a tunable, single-pass, pulsed nanosecond difference-frequency generation (DFG) source based on the new semiconductor nonlinear material, orientation-patterned gallium phosphide (OP-GaP). The DFG source is realized by mixing the output signal of a nanosecond OPO tunable over 1723-1827 nm with the input pump pulses of the same OPO at 1064 nm in an OP-GaP crystal, resulting in tunable generation over 233 nm in the mid-infrared from 2548 to 2781 nm. Using a 40-mm-long crystal, we have produced ∼14 mW of average DFG output power at 2719 nm for a pump power of 5 W and signal power of 1 W at 80 kHz repetition rate. To the best of our knowledge, this is the first single-pass nanosecond DFG source based on OP-GaP. The DFG output beam has a TEM spatial mode profile and exhibits passive power stability better than 1.7% rms over 1.4 h at 2774 nm, compared to 1.6% and 0.1% rms for the signal and pump, respectively. The OP-GaP crystal is recorded to have a temperature acceptance bandwidth of 17.7°C.
我们报道了一种基于新型半导体非线性材料——取向图案化磷化镓(OP-GaP)的可调谐、单通、脉冲纳秒级差频产生(DFG)源。该DFG源是通过在一块OP-GaP晶体中,将波长在1723 - 1827nm范围内可调谐的纳秒光参量振荡器(OPO)的输出信号与同一OPO在1064nm处的输入泵浦脉冲混合实现的,从而在2548至2781nm的中红外波段产生233nm的可调谐输出。使用一块40mm长的晶体,在80kHz重复频率下,当泵浦功率为5W且信号功率为1W时,我们在2719nm处产生了约14mW的平均DFG输出功率。据我们所知,这是首个基于OP-GaP的单通纳秒DFG源。DFG输出光束具有TEM空间模式分布,并且在2774nm处1.4小时内的被动功率稳定性优于均方根误差(rms)的1.7%,相比之下,信号光和泵浦光的均方根误差分别为1.6%和0.1%。记录显示OP-GaP晶体的温度接受带宽为17.7°C。