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A terahertz band-pass resonator based on enhanced reflectivity using spoof surface plasmons

机译:基于欺骗性表面等离子体激元的增强反射率的太赫兹带通谐振器

摘要

We demonstrate a band-pass resonator in the terahertz (THz) range, based on a frequency-selective designer reflector. The resonator consists of a parallel-plate waveguide, a designed groove pattern cut into the output facet of each plate, and a reflecting mirror. The patterned facet supports a spoof surface plasmon mode, which modifies the reflectivity at the waveguide output facet by interacting with the waveguide mode. By tuning the geometrical parameters of the groove pattern, the reflectivity at the patterned output facet can be increased up to ~100% for a selected frequency. Broadband THz waves are quasi-optically coupled into this resonator and reflected multiple times from the patterned facet. This leads to a narrowing of the spectrum at the selected frequency. The Q value of the resonator increases as the number of reflections on the patterned facet increases, reaching ~25 when the THz wave has experienced 12 reflections.
机译:我们演示了基于频率选择性设计器反射器的太赫兹(THz)范围的带通谐振器。谐振器由平行板波导,切入每个板输出面的设计凹槽图案和反射镜组成。构图的小平面支持欺骗的表面等离振子模式,该模式通过与波导模式交互作用来修改波导输出小平面上的反射率。通过调整凹槽图案的几何参数,对于选定的频率,在图案化的输出面上的反射率可以提高到〜100%。宽带太赫兹波准光学耦合到该谐振器中,并从图案化的小面反射多次。这导致所选频率处的频谱变窄。谐振器的Q值随着构图小平面上反射次数的增加而增加,当THz波经历12次反射时达到约25。

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