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首页> 外文期刊>Applied Physics B: Lasers and Optics >High-pulse-energy high-efficiency mid-infrared generation based on KTA optical parametric oscillator
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High-pulse-energy high-efficiency mid-infrared generation based on KTA optical parametric oscillator

机译:基于KTA光参量振荡器的高脉冲能量高效中红外发生器

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摘要

A high-energy, high-efficiency mid-infrared KTA OPO at 3.47 μm intracavity pumped by a Nd:YAG laser is presented. The maximum output energy is 31 mJ at the repetition rate of 10 Hz with a V-shaped cavity, corresponding to the absolute optical-to-optical conversion efficiency of 4.76% from the diode and the photon conversion efficiency of 87% from the fundamental to mid-infrared energy. The pulse width is 5.8 ns at the maximum output energy and the peak power reaches higher than 5 MW. The line width of the mid-infrared wave is about 1.1 nm (or 0.9 cm−1 in wave number). The output energy demonstrates good stability. To our knowledge, these are the highest pulse energy and conversion efficiency of mid-infrared OPOs using bulk nonlinear crystals in the 3–5 μm range.
机译:提出了由Nd:YAG激光泵浦在3.47μm腔内的高能量,高效率中红外KTA OPO。在V形腔的情况下,在10 Hz的重复频率下,最大输出能量为31 mJ,对应于二极管的绝对光-光转换效率为4.76%,而从基波到光子的光子转换效率为87%中红外能量。在最大输出能量下,脉冲宽度为5.8 ns,峰值功率达到5 MW以上。中红外波的线宽约为1.1 nm(或波数为0.9 cm -1 )。输出能量显示出良好的稳定性。据我们所知,这是使用3–5μm范围内的大体积非线性晶体的中红外OPO的最高脉冲能量和转换效率。

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