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Optical frequency mixing through nanoantenna enhanced difference frequency generation: Metatronic mixer

机译:通过纳米天线的光频混合增强了差分频率的产生:Metatronic混频器

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摘要

A design for a subwavelength all-optical frequency mixer is proposed. The method relies on enhanced difference-frequency generation, which is achieved in two steps with the help of plasmonic nanoantennas. The interaction of the two input signals with the nonlinear material is increased through the use of input nanoantennas, which focus the incident energy of two different frequencies onto the nanoparticle formed by a nonlinear material. Next, the difference-frequency emission is enhanced through the Purcell effect by the use of a separate output nanoantenna that is resonant at the difference frequency. The application of this twofold approach allows for a significant enhancement in the difference-frequency generation efficiency. Simulation results are presented highlighting the features of the method. This multi-element nanostructure is indeed an optical mixer circuit element in the metatronic paradigm.
机译:提出了一种亚波长全光混频器的设计方案。该方法依赖于增强的差频生成,这是通过等离子体纳米天线分两步实现的。通过使用输入纳米天线,可以增加两个输入信号与非线性材料的相互作用,该输入天线将两个不同频率的入射能量聚焦到由非线性材料形成的纳米粒子上。接下来,通过使用在差频下谐振的单独的输出纳米天线,通过赛尔效应(Purcell effect)增强了差频发射。这种双重方法的应用可以显着提高差频产生效率。仿真结果表明了该方法的特点。这种多元素纳米结构确实是超电子学范式中的光学混合器电路元件。

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