首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Low-threshold, high-efficiency, widely tunable infrared source from a KTP-based optical parametric oscillator
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Low-threshold, high-efficiency, widely tunable infrared source from a KTP-based optical parametric oscillator

机译:来自基于KTP的光参量振荡器的低阈值,高效率,可广泛调谐的红外源

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摘要

We demonstrate a widely tunable infrared optical parametric oscillator with a low pump threshold and high efficiency, which is based on the nonlinear material KTP and pumped by Q-switched nanosecond lasers operating at 1.047 mu m. For a KTP crystal cut at theta = 63.4 degrees, phi = 0 degrees, the achieved signal wavelength tuning of the optical parametric oscillator was 1.58-1.64 mu m. By nonresonantly reflecting the pump wave back through the nonlinear medium, more than a factor of 3 reduction in pump threshold was observed. The external conversion efficiency (from pump to signal) was as high as similar to 40%. Theoretical models developed for predicting phase-matching parameters and pump threshold are also described and shown to be in good agreement with experimental observations. (C) 1997 Optical Society of America [S0740-3224(97)00312-3].
机译:我们演示了一种具有低泵浦阈值和高效率的可广泛调谐的红外光学参量振荡器,该振荡器基于非线性材料KTP并由工作在1.047μm的Q开关纳秒激光器泵浦。对于在θ= 63.4度,phi = 0度切割的KTP晶体,光学参量振荡器的信号波长调谐为1.58-1.64μm。通过非谐振地将泵浦波反射回非线性介质,观察到泵浦阈值降低了3倍以上。外部转换效率(从泵到信号)高达40%。还描述了用于预测相位匹配参数和泵浦阈值的理论模型,并显示与实验观察结果非常吻合。 (C)1997年美国眼镜学会[S0740-3224(97)00312-3]。

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