首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Plasmon-induced transparency in an air-dielectric grooved parallel-plate terahertz waveguide
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Plasmon-induced transparency in an air-dielectric grooved parallel-plate terahertz waveguide

机译:在空气介质沟槽平行板太赫兹波导的等离子体诱导的透明度

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In this paper, we examine the plasmon-induced transparency (PIT) effect in a parallel-plate waveguide comprising two similar pyramidal-shaped grooves. One of the grooves is filled with air, while the other is filled with a dielectric material whose refractive index can be varied. The resonant frequencies corresponding to the air and dielectric grooves in the proposed configuration result in the transparency window, which can be modulated with the refractive index of the dielectric material. The approach provides flexibility to control the transparency effect in a waveguide configuration without changing the physical dimensions. We examined field profiles in the transparency region to clearly depict the PIT effect. We have employed an analytical model based upon the three-level plasmonic model to validate our numerical findings. Further, we examined the switching and tunability of the transparency effect by including silicon layers between the grooves, whose conductivity can be varied. The tunable response in the PIT effect in terahertz waveguides can be significant in the construction of terahertz waveguide components. (C) 2021 Optical Society of America
机译:在本文中,我们研究了由两个类似的锥形槽组成的平行平板波导中的等离子体激元诱导透明(PIT)效应。其中一个凹槽填充空气,而另一个凹槽填充折射率可以变化的介电材料。在所提出的配置中,与空气和电介质槽相对应的谐振频率产生透明窗口,该窗口可以用电介质材料的折射率进行调制。该方法提供了在不改变物理尺寸的情况下控制波导配置中的透明效果的灵活性。我们检查了透明区域的场分布,以清楚地描述凹坑效应。我们采用了基于三能级等离子体模型的分析模型来验证我们的数值结果。此外,我们还通过在凹槽之间加入硅层(其电导率可以变化)来研究透明效应的开关和可调谐性。太赫兹波导中凹坑效应的可调谐响应在太赫兹波导元件的构造中具有重要意义。(2021)美国光学学会

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