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A Low-noise Micromachined Millimeter-Wave Heterodyne Mixer using Nb Superconducting Tunnel Junctions

机译:使用Nb超导隧道结的低噪声微加工毫米波外差混频器

摘要

A heterodyne mixer with a micromachined horn antenna and a superconductor-insulator-superconductor (SIS) tunnel junction as mixing element is tested in the W-band (75-115 GHz) frequency range. Micromachined integrated horn antennas consist of a dipole antenna suspended on a thin Si3N4 dielectric membrane inside a pyramidal cavity etched in silicon. The mixer performance is optimized by using a backing plane behind the dipole antenna to tune out the capacitance of the tunnel junction. The lowest receiver noise temperature of 30 +/- 3 K (without any correction) is measured at 106 GHz with a 3-dB bandwidth of 8 GHz. This sensitivity is comparable to the state-of-the-art waveguide and quasi-optical SIS receivers, showing the potential use of micromachined horn antennas in imaging arrays.
机译:在W波段(75-115 GHz)频率范围内测试了具有微机械喇叭天线和超导体-绝缘体-超导体(SIS)隧道结作为混合元件的外差混合器。微机械集成喇叭天线由一个偶极天线组成,该天线悬挂在硅刻蚀的金字塔形空腔内的薄Si3N4介电膜上。通过使用偶极天线后面的背板来调出隧道结的电容,可以优化混频器的性能。在106 GHz且8 GHz的3 dB带宽下测得的最低接收机噪声温度为30 +/- 3 K(无任何校正)。这种灵敏度可与最新的波导和准光学SIS接收器相媲美,这表明微机械喇叭天线在成像阵列中的潜在用途。

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