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取向图案化磷化镓中的光学参量产生

Optical parametric generation in orientation-patterned gallium phosphide.

作者信息

Ye Hanyu, Chaitanya Kumar S, Wei Junxiong, Schunemann P G, Ebrahim-Zadeh M

出版信息

Opt Lett. 2017 Sep 15;42(18):3694-3697. doi: 10.1364/OL.42.003694.

Abstract

We report an optical parametric generator (OPG) based on the new nonlinear material, orientation-patterned gallium phosphide (OP-GaP). Pumped by a Q-switched nanosecond Nd:YAG laser at 1064 nm with 25 kHz pulse repetition rate, the OPG can be tuned across 1721-1850 nm in the signal and 2504-2787 nm in the idler. Using a 40-mm-long crystal in single-pass configuration, we have generated a total average output power of up to ∼18  mW, with ∼5  mW of idler power at 2670 nm, for 2 W of input pump power. The OPG exhibits a passive stability in total output power better than 0.87% rms over 1 h, at a crystal temperature of 120°C, compared to 0.14% rms for the input pump. The output signal pulses, recorded at 1769 nm, have duration of 5.9 ns for input pump pulses of 9 ns. Temperature-dependent loss measurements for the pump polarization along the [100] axis in the OP-GaP crystal have also been performed, for the first time, indicating a drop in transmission from 28.8% at 50°C to 19.4% at 160°C.

摘要

我们报道了一种基于新型非线性材料——取向图案化磷化镓(OP-GaP)的光学参量发生器(OPG)。该OPG由调Q纳秒级1064 nm Nd:YAG激光器泵浦,脉冲重复频率为25 kHz,其信号光可在1721 - 1850 nm范围内调谐,闲频光可在2504 - 2787 nm范围内调谐。采用40 mm长的晶体单通结构,对于2 W的输入泵浦功率,我们已产生高达约18 mW的总平均输出功率,其中在2670 nm处闲频光功率约为5 mW。在晶体温度为120°C时,该OPG的总输出功率呈现出优于0.87% rms的被动稳定性,持续时间为1小时,而输入泵浦功率的均方根误差为0.14%。在1769 nm处记录的输出信号脉冲,对于9 ns的输入泵浦脉冲,其持续时间为5.9 ns。首次对OP-GaP晶体中沿[100]轴的泵浦偏振进行了温度相关损耗测量,结果表明传输率从50°C时的28.8%下降到160°C时的19.4%。

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