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Single-Layer Dichroic Filters for Multifrequency Receivers at THz Frequencies

机译:用于THz频率的多频接收器的单层二向色滤波器

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In this work, we report the design, construction, and characterization of two free-standing single-layer frequency-selective surface structures to be used as dichroic filters in the THz range. Their spectral responses are aimed to fulfill a stringent band-pass performance in the atmospheric window between 600 and 725 GHz. Specifically, the dichroics have been required to allow a transmission of electromagnetic radiation of at least 90%, achieve a rejection in the stop-band lower than -25 dB, and have cross-polarization levels below -30 dB. All these specifications were demanded to be satisfied at normal and nonnormal beam incidence. We have studied dichroic filters with hexagonal patterns of two different apertures, a well-known single-hole geometry and, in order to enhance the spectral performance, a novel aperture geometry that we call the flower type. Their transmission characteristics were measured using a Fourier transform spectrometer. The electromagnetic simulations and experimental results not only show a good agreement but they demonstrate that the flower-type geometry can greatly outperform its single-hole counterpart achieving all the desired requirements. In this way, we demonstrate the feasibility of implementing single-layer systems at (sub)-THz frequencies suitable for low-noise astronomical applications.
机译:在这项工作中,我们报告了两个独立式单层频率选择性表面结构的设计,结构和表征,以便在THz范围内用作二向色滤光片。它们的光谱响应旨在满足在600和725GHz之间的大气窗口中严格的带通性能。具体地,已经需要二向色剂以允许电磁辐射的透射至少90%,在低于-25dB的止动带中达到抑制,并且具有低于-30 dB的交叉偏振水平。要求所有这些规范在正常和非正规束入射时满足。我们研究了具有两个不同孔径的六角形图案的二向色滤光片,众所周知的单孔几何形状,以提高光谱性能,这是我们称之为花型的新型光圈几何形状。使用傅里叶变换光谱仪测量其传输特性。电磁模拟和实验结果不仅显示出良好的一致性,而且表明花型几何形状可以极大地优于其单孔对应物,实现所有所需要求。通过这种方式,我们展示了在适用于低噪声天文应用的(Sub)-thz频率下实现单层系统的可行性。

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