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Metal mesh resonant filters for terahertz frequencies

机译:金属网谐振滤波器,用于太赫兹频率

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The interest in terahertz photometric and imaging measurements has motivated the development of bandpass resonant filters to be coupled to multiple-pixel devices such as bolometer arrays. Resonant grids are relatively simple to fabricate, exhibiting high transmission at the central frequency, a narrow bandpass, and good rejection of the side frequencies of the spectrum. We have fabricated filters centered at different frequencies between 0.4 and 10 THz, using photolithography and electroforming techniques. Transmission measurements have shown center frequencies and bandwidths close to the design predictions. The performance of the filters was found not to be critically dependent on small physical deformations in the mesh, becoming more noticeable at higher frequencies (i.e., for smaller physical sizes). Wider bandwidths, needed to attain higher sensitivities in the continuum, were obtained by changing the design parameters for filters at 2 and 3 THz.
机译:对太赫兹光度和成像测量的兴趣促使了带通谐振滤波器的发展,以将其耦合到诸如辐射热计阵列的多像素设备。谐振栅格的制造相对简单,在中心频率处显示出高透射率,窄带通,并且对频谱的副频率具有良好的抑制作用。我们使用光刻和电铸技术制造了以0.4至10 THz不同频率为中心的滤波器。传输测量显示中心频率和带宽接近设计预测。发现过滤器的性能不是严格依赖于网格中的小的物理变形,而是在较高的频率下(即,对于较小的物理尺寸)变得更加明显。通过在2 THz和3 THz处更改滤波器的设计参数,可以获得连续获得更高灵敏度所需的更宽带宽。

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