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High-energy kHz mid-IR tunable PPSLT-based OPO pumped at 1064 nm

机译:高能kHz中红外可调谐基于PPSLT的OPO泵浦到1064 nm

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We report a single-frequency sub-nanosecond optical parametric oscillator (OPO) based on periodically poled stoichiometric lithium tantalate (PPSLT), pumped by a 1064-nm amplified microchip laser at a repetition rate of 0.5 kHz. Using a 11-mm-long PPSLT crystal polled with three different domain periods (30.2, 30.3, 30.4 μm) and changing the temperature of the crystal from 20 °C to 265 °C, we have achieved wavelength tuning between 2990 nm and 3500 nm. The high nonlinearity of the used medium and the large aperture (2 mm) ensure the maximum idler output energy of ?0.5 mJ in the whole tuning range, corresponding to average ?10.5 % idler conversion efficiency and ?250 mW of average power. Sub-nanosecond pulse durations have been obtained for the idler at 0.88-ns pulse duration of the pump.
机译:我们报告基于周期极化化学计量的钽酸锂(PPSLT)的单频亚纳秒光学参量振荡器(OPO),它由1064 nm放大微芯片激光器泵浦,重复频率为0.5 kHz。使用经三个不同畴周期(30.2、30.3、30.4μm)轮询的11毫米长的PPSLT晶体并将晶体温度从20°C更改为265°C,我们实现了2990 nm至3500 nm的波长调谐。所用介质的高度非线性和较大的孔径(2 mm)确保在整个调谐范围内的最大惰轮输出能量约为0.5 mJ,相当于平均惰轮转换效率约为10.5%,平均功率约为250 mW。在泵的脉冲持续时间为0.88 ns时,已获得惰轮的亚纳秒脉冲持续时间。

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