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Dichroic Optical Diode Transmission in Two Dislocated Parallel Metallic Gratings

机译:两个错位的平行金属光栅中的二向色性光电二极管传输

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摘要

An optical diode structure with two dislocated parallel metallic gratings is proposed and investigated numerically. Dichroic optical diode transmission is realized in this structure, i.e., optical diode effect is observed in two wavebands corresponding to inverse transmission directions. In the structure, two parallel metallic gratings with different grating constants are separated by a dielectric slab in between. The first illuminated grating acts as a selector for exciting surface plasmons at a proper wavelength. The other grating acts as an emitter to realize optical transmission. When the incident direction is reversed, the roles of two gratings exchange and surface plasmons are excited at another wavelength. In dichroic transmission wavebands, the optical diode structure exhibits extraordinary transmission and possesses high optical isolation up to 1. Furthermore, the operating wavebands can be modulated by changing structure parameters.
机译:提出并研究了具有两个错位的平行金属光栅的光电二极管结构。在这种结构中实现了二向色性光电二极管的传输,即,在与反向传输方向相对应的两个波段中观察到了光电二极管效应。在该结构中,两个具有不同光栅常数的平行金属光栅之间被介电平板隔开。第一照明光栅用作在适当波长下激发表面等离子体激元的选择器。另一个光栅充当发射器以实现光传输。当入射方向相反时,两个光栅交换的作用和表面等离子体激元在另一波长激发。在二向色性传输波段中,光学二极管结构表现出非凡的传输性能,并具有高达1的高光学隔离度。此外,可以通过更改结构参数来调制工作波段。

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