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Theory of second-harmonic generation in silica nanowires

机译:二氧化硅纳米线中的二次谐波产生理论

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The possibility of second-harmonic generation based on surface dipole and bulk multipole nonlinearities in silica nanowires is investigated numerically. Both circular and microstructured nanowires are considered. Phase matching is provided by propagating the pump field in the fundamental mode, while generating the second harmonic in one of the modes of the LP_(11) multiplet. This is shown to work in both circular and microstructured nanowires, although only one of the LP_(11) modes can be phase-matched in the microstructure. The prospect of obtaining large conversion efficiencies in silica-based nanowires is critically discussed, based on simulations of second-harmonic generation in nanowires with a fluctuating phase-matching wavelength. It is concluded that efficient wavelength conversion will either require strong improvements in the nanowire uniformity, or an increase of the second-order nonlinearity by at least an order of magnitude by use of a different base material, or highly polarizable surface coatings.
机译:数值研究了二氧化硅纳米线中基于表面偶极子和体多极子非线性的二次谐波产生的可能性。圆形和微结构纳米线均被考虑。通过以基本模式传播泵浦场,同时以LP_(11)多重模式之一生成二次谐波,可以提供相位匹配。尽管只有LP_(11)模式之一可以在微结构中进行相位匹配,但这种方法在圆形和微结构纳米线中均可工作。基于具有可变相位匹配波长的纳米线中的二次谐波产生的仿真,对在基于二氧化硅的纳米线中获得大转换效率的前景进行了严格的讨论。结论是,有效的波长转换将需要大大改善纳米线的均匀性,或者通过使用不同的基材或高度可极化的表面涂层将二级非线性至少增加一个数量级。

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