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Second harmonic generation in graphene-coated nanowires

机译:石墨烯涂层纳米线中的二次谐波产生

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We study second harmonic generation in a pair of graphene-coated nanowires. We show that the phase matching condition for harmonic generation can be engineered in a wide range of frequencies by tuning the spacing between graphene nanowires. We derive coupled mode equations describing the process of second harmonic generation using an unconjugated Lorentz reciprocity theorem. We show that the highest harmonic generation efficiency can be achieved by phase matching the fundamental mode with the two lowest order symmetric modes at the second harmonic frequency. Despite losses in graphene, we predict that the efficiency can be further enhanced by reducing the radius of nanowires due to larger mode overlap and lower propagation loss. (C) 2016 Optical Society of America
机译:我们研究了一对石墨烯涂层纳米线中的二次谐波的产生。我们表明,通过调节石墨烯纳米线之间的间距,可以在很宽的频率范围内设计出用于谐波产生的相位匹配条件。我们使用非共轭洛伦兹互易性定理推导了描述二次谐波产生过程的耦合模式方程。我们表明,通过在第二谐波频率下将基本模式与两个最低阶对称模式进行相位匹配,可以实现最高的谐波产生效率。尽管石墨烯有所损失,但我们预测由于较大的模式重叠和较低的传播损耗,可以通过减小纳米线的半径来进一步提高效率。 (C)2016美国眼镜学会

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