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首页> 外文期刊>Journal of Electromagnetic Waves and Applications >Nonlinear active Huygens metasurfaces for reflectionless phase conjugation of electromagnetic waves in electrically thin layers
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Nonlinear active Huygens metasurfaces for reflectionless phase conjugation of electromagnetic waves in electrically thin layers

机译:用于电薄层中电磁波无反射相位共轭的非线性有源惠更斯超表面

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摘要

A possibility of almost perfect phase conjugation in electrically thin nonlinear sheets is shown for the normal incidence of the signal wave, using either symmetrical or asymmetrical particles and nondegenerate interaction with slightly different frequencies of the incident and phase-conjugated waves. Under these conditions, the use of linear and nonlinear Huygens sources for both linear (signal) and nonlinear (phase-conjugated) waves ensures zero or very small reflection for both of them. In perspective, this can lead to realization of reflectionless superlens based on three-wave interactions, as well to other applications based on reflection-free and electrically thin nonlinear layers.
机译:对于信号波的法向入射,使用对称或不对称的粒子以及在入射波和相位共轭波的频率略有不同的非简并相互作用下,显示出在电薄非线性片中几乎完美的相位共轭的可能性。在这些条件下,对线性(信号)波和非线性(相位共轭)波使用线性和非线性惠更斯源可确保它们的反射为零或很小。从角度上讲,这可以导致基于三波交互作用的无反射超透镜的实现,以及基于无反射和薄电非线性层的其他应用程序的实现。

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