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An ultrafast laser micromachined broadband terahertz frequency selective surface

机译:超快激光微加工宽带太赫兹频率选择表面

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The purpose of this paper is to focus on the frequency selective surface (FSS) filter structure which exhibits a broadband frequency response operating in the terahertz (THz) frequency regime. The achievement of the broadbandfrequency response has been accomplished by means of only invoking the FSS structure excluding the presence of a ground plane and also excluding the multilayered FSS technique. The FSS filter is simulated using CST Microwave Studio. This simulation has been carried out using Teflon as the substrate which is a dielectric over which the conductive material gold with a thickness of 2 $mu$m is coated in which the FSS filter structure is designed with periodic hexagonal aperture unit cells. The structure of the proposed frequency selective surface filter helps in achieving a broadband frequency response witha bandwidth of 300 GHz centred at 0.36 THz. The designed FSS structure is a bandpass filter and it exhibits the most imperative properties of angle resolvability and polarization insensitivity. The fabrication of the same has been carried outusing the laser micromachining process.
机译:本文的目的是集中在频率选择表面(FSS)滤波器结构上,该结构表现出在太赫兹(THz)频率范围内工作的宽带频率响应。宽带频率响应的实现是通过仅调用FSS结构(不包括接地层)以及不包括多层FSS技术来实现的。使用CST Microwave Studio模拟FSS滤波器。已经使用聚四氟乙烯作为基材进行了该模拟,该基材是电介质,在该电介质上涂覆了厚度为2μm的导电材料金,其中FSS滤波器结构设计为具有周期六边形孔径单位单元。所提出的频率选择性表面滤波器的结构有助于实现以300 GHz为中心,以0.36 THz为中心的宽带频率响应。设计的FSS结构是一个带通滤波器,它具有角度分辨能力和偏振不敏感性的最重要的特性。使用激光微加工工艺已经完成了其制造。

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