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Second-Harmonic Generation with Zero Group-Velocity Mismatch in Nonlinear Photonic Crystal Fibers

机译:非线性光子晶体纤维中的零群速度不匹配的二次谐波产生

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We consider an index-guiding silica photonic crystal fiber with a triangular hole-pattern and a periodically poled quadratic nonlinearity. By tuning the pitch and the relative size of the holes, second-harmonic generation with zero group-velocity mismatch is found to be feasible for any fundamental wavelength above 780 nm. The phase-velocity mismatch has a lower limit with coherence lengths in the micron range. The nonlinear strength is optimized when the fundamental has maximum confinement in the core. The conversion bandwidth allows for fs-pulse conversion and 4-180 percent/(W(centre dot)cm~(2)) relative efficiencies were found.
机译:我们考虑具有三角形空穴图案的指数引导二氧化硅光子光子光纤和周期性极化的二次非线性。通过调节孔的间距和相对尺寸,发现具有零组速度不匹配的第二谐波产生可加于780nm以上的任何基本波长。相速度失配具有微米范围内的相干长度的下限。当基本核心限制时,非线性强度被优化。转换带宽允许FS脉冲转换,并找到4-180%/(W(中心点)cm〜(2))相对效率。

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