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Thermal dephasing in an enhanced cavity based high-power second harmonic generation

机译:基于增强的高功率二次谐波产生的热脱模

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We report on the performance of an enhanced-cavity (EC) designed for obtaining high-power and efficiency second-harmonic generation (SHG). This is performed by numerical simulation of SHG coupled equations in the presence of a thermal dephasing effect that is effectively intensified through embedding the periodically poled LiNbO3 crystal by an oven-surrounded scheme. It is found that by setting the PPLN temperature at an optimum value, adjusting the mirror reflectively, and pumping power at certain values, gaining SHG efficiency of more than 90% is possible. We further realized that by an ECSHG device SHG efficiency can be improved by about 15%-50%. Moreover, compared to a single-pass SHG scheme, the EC-based SHG device is shown to be a very promising candidate to reduce and suppress the effect of thermal dephasing on the stability and efficiency of SHG radiation. (C) 2018 Optical Society of America
机译:我们报告了设计用于获得高功率和效率二次谐波产生(SHG)的增强腔(EC)的性能。 这是由SHG耦合方程的数值模拟在存在热脱模效果的情况下进行,这通过通过烤箱包围的方案嵌入周期性极化的LINBO3晶体而有效地强化。 发现,通过以最佳值设置PPLN温度,可以反射地调节镜子,并在某些值下泵送电力,因此可以获得超过90%的SHG效率。 我们进一步意识到,通过ECSHG设备SHG效率可以提高约15%-50%。 此外,与单通SHG方案相比,基于EC的SHG器件被证明是一种非常有前途的候选者,以减少和抑制热脱模对SHG辐射的稳定性和效率的影响。 (c)2018年光学学会

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