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Theoretical research on one-third harmonic generation process in optical microfibers

机译:光学超细纤维中三分之一谐波产生过程的理论研究

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This work, based on third-order nonlinear coupled-mode equations, aims at analyzing the optimization in one-third harmonic generation processes with initial conditions, including the initial ratio of the incident light power, phase difference, diameter and effective length of silica microfibers. Through the application of the microfiber loop resonators to one-third harmonic generation process, we reduce the incident power threshold of seed light by tens orders, and increase the nonlinear effective interaction length by several hundreds of times. Theoretical calculation results show that the loop resonator can effectively enhance the conversion efficiency of one-third harmonic generation by 10~4 compared with the straight microfibers.
机译:这项工作基于三阶非线性耦合模式方程,旨在分析具有初始条件的三次谐波生成过程的优化,包括入射光功率的初始比率,相差,二氧化硅微纤维的直径和有效长度。 。通过将超细纤维环形谐振器应用于三分之一的谐波产生过程,我们将种子光的入射功率阈值降低了数十个数量级,并将非线性有效相互作用长度增加了数百倍。理论计算结果表明,与直型超细纤维相比,环形谐振器可以有效地将三分之一谐波产生的转换效率提高10〜4倍。

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