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Optical parametric oscillation in a random polycrystalline medium: ZnSe ceramic

机译:随机多晶介质中的光学参量振荡:ZnSe陶瓷

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We demonstrate an optical parametric oscillator (OPO) based on random phase matching in a polycrystalline χ~((2)) material, ZnSe. The subharmonic OPO utilized a 1.5-mm-long polished ZnSe ceramic sample placed at the Brewster's angle and was synchronously pumped by a Kerr-lens mode-locked Cr:ZnS laser with a central wavelength of 2.35 μm, a pulse duration of 62 fs, and a repetition frequency of 79 MHz. The OPO had a 90-mW pump threshold, and produced an ultra-broadband spectrum spanning 3-7.5 μm. The observed pump depletion was as high as 79%. The key to success in achieving the OPO action was choosing the average grain size of the ZnSe ceramic to be close to the coherence length (~ 100 μm) for our 3-wave interaction. This is the first OPO that uses random polycrystalline material with quadratic nonlinearity and the first OPO based on ZnSe. Very likely, random phase matching in ZnSe and similar random polycrystalline materials (ZnS, CdS, CdSe, GaP) represents a viable route for generating few-cycle pulses and multi-octave frequency combs, thanks to a very broadband nonlinear response.
机译:我们演示了基于多晶χ〜((2))材料ZnSe中随机相位匹配的光学参量振荡器(OPO)。次谐波OPO使用1.5mm长的抛光ZnSe陶瓷样品以布鲁斯特角放置,并由Kerr-lens锁模Cr:ZnS激光器同步泵浦,该激光器的中心波长为2.35μm,脉冲持续时间为62 fs,重复频率为79 MHz。 OPO具有90兆瓦的泵浦阈值,并产生了范围为3-7.5μm的超宽带频谱。观察到的泵损耗高达79%。成功实现OPO作用的关键是选择ZnSe陶瓷的平均晶粒尺寸,使其接近3波相互作用的相干长度(〜100μm)。这是第一个使用具有二次非线性随机多晶材料的OPO,也是第一个基于ZnSe的OPO。 ZnSe和类似的随机多晶材料(ZnS,CdS,CdSe,GaP)中的随机相位匹配非常有可能成为产生几周期脉冲和多倍频程梳齿的可行途径,这要归功于非常宽的非线性响应。

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