Casals J C, Parsa S, Kumar S Chaitanya, Devi K, Schunemann P G, Ebrahim-Zadeh M
Opt Express. 2017 Aug 7;25(16):19595-19602. doi: 10.1364/OE.25.019595.
We report the generation of tunable high-repetition-rate picosecond radiation in the mid-infrared using the new quasi-phase-matched nonlinear material of orientation-patterned gallium phosphide (OP-GaP). The source is realized by single-pass difference-frequency-generation (DFG) between the output signal of a picosecond optical parametric oscillator (OPO) tunable across 1609-1637 nm with input pump pulses at 1064 nm in OP-GaP, resulting in tunable radiation across 3040-3132 nm. Using a 40-mm-long crystal, we have generated up to 57 mW of DFG average power at ~80 MHz repetition rate for a pump power of 5 W and signal power of 0.9 W, with >30 mW over >50% of the tuning range. The DFG source exhibits a passive power stability better than 3.2% rms over 1 hour in good spatial beam quality. To the best of our knowledge, this is the first picosecond frequency conversion source based on OP-GaP.
我们报道了利用新型准相位匹配非线性材料——取向图案化磷化镓(OP-GaP),在中红外波段产生可调谐高重复率皮秒辐射的研究成果。该光源通过在OP-GaP中,利用皮秒光参量振荡器(OPO)输出的信号(波长在1609 - 1637 nm范围内可调)与1064 nm的输入泵浦脉冲进行单通差频产生(DFG)来实现,从而产生波长在3040 - 3132 nm范围内可调的辐射。使用一块40毫米长的晶体,在泵浦功率为5 W、信号功率为0.9 W时,我们以约80 MHz的重复频率产生了高达57 mW的DFG平均功率,在超过50%的调谐范围内平均功率大于30 mW。该DFG光源在良好的空间光束质量下,1小时内的无源功率稳定性优于3.2%均方根误差。据我们所知,这是首个基于OP-GaP的皮秒频率转换光源。