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Near-Field and Far-Field Directional Conversion of Spoof Surface Plasmon Polaritons

机译:欺骗表面等离子体激元极化子的近场和远场方向转换

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摘要

A compact metallic meta-structure is proposed to realize directional conversion between spoof surface plasmon polaritons (SSPPs) and propagating waves at millimeter wave and THz frequencies. The structure is constructed by embedding two slits or multi-slits array into a subwavelength metallic reflection grating. When the back-side of the structure is illuminated by an oblique beam with a fixed incident angle, the propagating wave will be unidirectionally converted into SSPPs with a considerable efficiency. Both the simulations and experiments demonstrate that the excitation ratio of the SSPPs between the two possible propagating directions (left and right) reaches up to about 340. Furthermore, assisted by the structure, near-field SSPPs can be also converted into far-field narrow beams with particular directions. Through frequency sweeping, wide-angle beam scanning is verified by theory and experiments. The work paves a new way for SSPPs launching and also provides fresh ideas for super-resolution imaging in the longer wavelength range.
机译:提出了一种紧凑的金属元结构,以实现欺骗性表面等离子体激元极化子(SSPPs)与毫米波和太赫兹频率下的传播波之间的方向转换。该结构是通过将两个狭缝或多狭缝阵列嵌入亚波长金属反射光栅中来构造的。当结构的背面被具有固定入射角的倾斜光束照射时,传播波将以相当高的效率单向转换为SSPP。仿真和实验均表明,SSPPs在两个可能的传播方向(左和右)之间的激发比达到约340。此外,在结构的辅助下,近场SSPPs也可以转换为远场窄特定方向的光束。通过扫频,理论和实验验证了广角光束扫描的有效性。这项工作为SSPPs的发射铺平了道路,也为更长波长范围内的超分辨率成像提供了新的思路。

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