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Monolithic millimeter-wave two-dimensional horn imaging arrays

机译:单片毫米波二维号角成像阵列

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摘要

A monolithic two-dimensional horn imaging array has been fabricated for millimeter wavelengths. In this configuration, a dipole is suspended in an etched pyramidal cavity on a 1-μm silicon-oxynitride membrane. This approach leaves room for low-frequency connections and processing electronics. The theoretical pattern is calculated by approximating the horn structure by a cascade of rectangular-waveguide sections. The boundary conditions are matched at each of the waveguide sections and at the aperture of the horn. Patterns at 93 and 242 GHz agree well with theory. Horn aperture efficiencies of 44±4%, including mismatch and resistive losses, have been measured. A detailed breakdown of the losses is presented. The coupling efficiency to various f-number imaging systems is investigated, and a coupling efficiency of 24% for an f0.7 imaging system (including spillover, taper, mismatch and resistive losses) has been measured. Possible application areas include imaging arrays for remote sensing, plasma diagnostics, radiometry and superconducting tunnel-junction receivers for radio astronomy.
机译:已经为毫米波长制造了单片二维角成像阵列。在这种配置中,偶极子悬浮在1-μm的氮氧化硅膜上的蚀刻锥体腔中。这种方法为低频连接和电子处理留有空间。通过用矩形波导段的级联近似喇叭结构来计算理论图案。边界条件在每个波导部分和喇叭的孔径处匹配。 93和242 GHz的模式与理论非常吻合。测量的喇叭孔效率为44±4%,包括不匹配和电阻损耗。提供了损失的详细分类。研究了与各种f值成像系统的耦合效率,对f0.7成像系统的耦合效率(包括溢出,锥度,失配和电阻损耗)已测量为24%。可能的应用领域包括用于遥感,等离子体诊断,辐射测量的成像阵列以及用于射电天文学的超导隧道结接收器。

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