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Structuring band-pass dispersion with cascaded high- and low-pass optical metatronic metasurfaces

机译:用级联高和低通光学元矫正器矫正器结构构建带式分散体

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In the paradigm of optical metatronics, metasurfaces with multi-layered structures can be engineered to behave as multi-ordered filters for desired spectral dispersions, such as low-pass, high-pass, band-pass, and band-stop cases, following and inspired by electronic circuit design procedures. However, there is a constraint in the design of layered band-pass metatronic filters with narrow bandwidth. Based on the concept of metatronic metasurfaces, a new method is proposed to achieve optical band-pass dispersion by cascading a pair of metatronic high-pass and low-pass metasurface filters. The proposed method is also numerically validated in the higher-ordered band-pass filter design with sharper transition slopes to the stopband. The results of our numerical simulations illustrate the possibility for such multi-ordered optical band-pass filters with narrow bandwidth, augmenting the procedures for dispersion engineering using layered metatronic metasurfaces.
机译:在光学态测量的范例中,具有多层结构的元件可以被设计为表现为用于所需光谱分散体的多订货过滤器,例如低通,高通,带通和带式停止情况,以及以下和灵感来自电子电路设计程序。然而,具有窄带宽的分层带通滤波器的设计存在约束。基于Metaidronic Metasurfaces的概念,提出了一种新方法,通过级联一对Metatronic高通和低通元件过滤器来实现光带通道。所提出的方法在更高度有序的带通滤波器设计中也是在数值上验证的,其具有更清晰的转换斜率到截止带。我们的数值模拟的结果说明了具有窄带宽的多订购光学带通滤波器的可能性,使用分层元质元件增强分散工程的程序。

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