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150-mJ 1550-nm KTA OPO with good beam quality and high efficiency

机译:150-mJ 1550-nm KTA OPO具有良好的光束质量和高效率

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We've demonstrated a nanosecond KTA OPO utilizing a high Fresnel-number quasi-monolithic image-rotating nonplanar-ring optical cavity to efficiently generate 1550 nm light with beam quality M~2 ~ 4. The OPO was pumped at 1064 nm and injection-seeded at 1550 nm and was tested using either one or two 10x10x 17 mm~3 KTA crystals. Total measured conversion efficiencies were as high as 45% and 55% respectively, with corresponding 1550 nm energies of approximately 135 mJ and 170 mJ. While energy and efficiency were high, agreement with numerical models that included walkoff, diffraction, and geometry of the nonplanar-ring, was poor near the oscillation threshold. Single-crystal oscillation revealed different thresholds for each KTA crystal. When tested by observing unphasematched 2ω generation, each crystal appears to contain a single ferroelectric domain, suggesting that refractive index inhomogeneity, or some other type of defect, prevents perfect phasematching.
机译:我们已经演示了纳秒KTA OPO,它利用高菲涅尔数准单片图像旋转非平面环光学腔有效产生1550 nm光束,光束质量为M〜2〜4。该OPO在1064 nm处泵浦并注入在1550 nm处注入晶种,并使用一个或两个10x10x 17 mm〜3 KTA晶体进行测试。测得的总转换效率分别高达45%和55%,相应的1550 nm能量约为135 mJ和170 mJ。尽管能量和效率很高,但在振荡阈值附近,与包括走动,衍射和非平面环几何形状在内的数值模型的一致性较差。单晶振荡揭示了每个KTA晶体的不同阈值。当通过观察非相位匹配的2ω生成进行测试时,每个晶体似乎都包含单个铁电畴,这表明折射率不均匀或某种其他类型的缺陷会阻止完美的相位匹配。

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