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“Lensters” at mm-wave frequencies

机译:毫米波频率下的“ Lensters”

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The use of capacitive metal-mesh structures on polypropylene substrates is routinely used in far infrared astronomy for the purpose of spectral low-pass filtering. The transmission of these filters well below their cut-off frequency follows the well known behavior of a Fabry-Perot etalon due to the fairly achromatic nature and finite thickness of the embedding substrate. We show how it is possible to reproduce to a good level of precision, the predicted transmission of an embedded stack of layers of a given square-geometry using Transmission Lines when compared to HFSS simulations. We then use the Fabry-Perot etalon model to invert their spectral behavior to extract an effective index of refraction corresponding to the mesh geometry and device thickness. This injective mapping allowed us to design a Gradient Index lens based on a fixed spacing (or grid) while varying the mesh filling factor. Measurements of such a flat lens-filter (or lenster) are shown.
机译:在远红外天文学中,通常将聚丙烯基片上的电容性金属网结构用于光谱低通滤波。这些滤光器的透射率远低于其截止频率,这是由于法布里-珀罗标准具的众所周知的行为,这是由于其相当消色差的性质和埋入基板的有限厚度所致。我们展示了与HFSS仿真相比,如何使用传输线将给定的正方形几何图形的嵌入式堆栈的层的预测传输复制到较高的精度水平。然后,我们使用Fabry-Perot标准具模型反转其光谱行为,以提取与网格几何形状和设备厚度相对应的有效折射率。这种内射映射使我们能够基于固定间距(或网格)设计渐变索引镜片,同时改变网格填充因子。示出了这样的平面透镜滤光器(或透镜透镜)的测量。

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