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Externally modulated, diode seeded Yb~(3+)-doped fiber MOPA pumped high power optical parametric oscillator

机译:外部调制,二极管播种YB〜(3 +) - 掺杂纤维MOPA泵浦高功率光学参数振荡器

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Here we report a high power, pulsed optical parametric oscillator (OPO) at 3.5 μm by using a MgO:PPLN crystal as the gain medium. The OPO itself was pumped by a semiconductor diode-seeded, Yb~(3+)-doped fiber Master Oscillator Power Amplifier (MOPA) operating at 1062nm. An OPO output power as high as 11W at an overall slope efficiency of 67% was achieved, with nearly 2.7W and 8.2W of optical power obtained at 3.5μm and 1.5μm respectively. Due to the fast response time of the external modulator, it is possible to implement active pulse shaping on a nanosecond timescale. Using adaptive pulse shaping of the seed laser (using an external modulator) we demonstrated a reduction in the impact of dynamic gain saturation and optical Kerr/Raman nonlinearities within the fibre MOPA obtaining shaped signal and idler pulses at the OPO output and reduced spectral bandwidths. We have also investigated the dependence of the OPO build-up time and energy transfer efficiency on pump pulse peak power and shape. The build-up time shows an exponential dependence on the pulse peak power and as expected decreases with an increase in pulse peak power. Analyzing the shift in spectral peak at 1.5μm it is possible to estimate the internal temperature of the crystal for various pump powers. Our experiments were pump-power limited and considerable scope remains for further power-scaling of the OPO output using this approach.
机译:PPLN晶体作为增益介质:在这里,我们使用的MgO在3.5微米报告高功率,脉冲光参量振荡器(OPO)。掺杂光纤主振荡器功率放大器(MOPA)在1062nm操作 - OPO的本身是由半导体二极管接种,镱〜(3 +)泵送。一个OPO输出功率高达11W以67%的总斜率效率达到了,近2.7W和分别在3.5μm和1.5μm的获得的光功率8.2W。由于外部调制器的响应时间快,所以能够实现在纳秒时间尺度活性脉冲整形。利用种子激光器的自适应脉冲整形(使用外部调制器),我们证实在动态增益饱和度和光克尔/拉曼非线性的纤维MOPA获得整形信号,并在OPO输出惰轮脉冲和降低的光谱带宽内的影响降低。我们还调查了对泵浦脉冲峰值功率和形状的OPO建立时间和能量传递效率的依赖。的建立时间示出了在脉冲峰值功率和作为与增加脉冲峰值功率减小预期的指数依赖性。在分析在1.5μm的光谱峰值的移位,能够估算结晶的内部温度为各种泵浦功率。我们的实验是泵的功率限制,相当大的范围遗体使用这种方法的OPO输出的进一步的功率缩放。

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