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首页> 外文期刊>Selected Topics in Quantum Electronics, IEEE Journal of >Graded Metallic Gratings for Ultrawideband Surface Wave Trapping at THz Frequencies
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Graded Metallic Gratings for Ultrawideband Surface Wave Trapping at THz Frequencies

机译:用于THz频率超宽带表面波陷波的分级金属光栅

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We summarize our study of the ultrawideband slow-light system based on plasmonic-graded metallic gratings for “rainbow” trapping at terahertz (THz) frequencies. The dispersion relations for a perfect conducting plane hosting an array of 1-D grooves having a constant depth were derived. Since the dispersion relations for the fundamental surface mode resemble those for the surface plasmon polaritons (SPPs) at optical frequencies, such a uniform grating can be used to effectively guide THz waves. The dispersion relations for these spoof SPPs can be tailored by choosing the geometric parameters of the surface structures. We show that a graded metallic surface grating can be used to trap THz waves at different locations along the surface grating corresponding to the different wavelengths. Theoretical and experimental studies of rainbow trapping at shorter wavelengths, e.g., in visible and near-infrared domains, are also briefly summarized.
机译:我们总结了基于等离激元渐变金属光栅的超宽带慢光系统的研究,该光栅用于以太赫兹(THz)频率捕获“彩虹”。推导了一个理想的导电平面的色散关系,该平面包含一列深度恒定的一维凹槽。由于基本表面模式的色散关系类似于光频率下的表面等离激元极化子(SPP)的色散关系,因此这种均匀的光栅可用于有效地引导THz波。可以通过选择表面结构的几何参数来定制这些欺骗性SPP的色散关系。我们表明,可以使用渐变金属表面光栅在沿表面光栅的不同位置对应于不同波长来捕获THz波。还简要总结了在较短波长(例如在可见光和近红外域)中捕获彩虹的理论和实验研究。

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