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A low noise 410-495 GHz Nb/Al/sub 2/O/sub 3//Nb SIS waveguide mixer

机译:低噪声410-495 GHz Nb / Al / sub 2 / O / sub 3 // Nb SIS波导混频器

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The noise and gain of a heterodyne waveguide mixer using Nb/Al/sub 2/O/sub 3//Nb superconducting tunnel junctions were measured in the 400-500-GHz frequency range. Three different arrays of two junctions in series are analyzed. The minimum receiver noise temperature is 120 K DSB at 480 GHz, measured with an array having integrated tuning stubs. The authors compare data of the pumped I-V curves with the Werthammer-Tucker theory and demonstrate an excellent agreement at frequencies up to 500 GHz. For an array without integrated tuning stubs. a mixer noise temperature of 90+or-30 K and a DSB mixer gain of -12.5+or-0.6 dB were measured. A comparison of the measured gain versus bias voltage with the quantum theory of mixing shows good qualitative agreement, indicating the applicability of this theory to Nb tunnel junctions up to 500 GHz. The noise temperature of an array with a lower gap voltage is 220 K at 495 GHz. This frequency is 85% of the reduced gap frequency, indicating that Nb superconductor insulator-superconductor (SIS) mixers can be used up at least the gap frequency of 680 GHz.
机译:在400-500 GHz频率范围内,测量了使用Nb / Al / sub 2 / O / sub 3 // Nb超导隧道结的外差波导混频器的噪声和增益。分析了两个串联的三个不同的阵列。最低接收器噪声温度为480 GHz时的120 K DSB,是使用具有集成调谐桩的阵列测得的。作者将抽运的I-V曲线数据与Werthammer-Tucker理论进行了比较,并证明了在高达500 GHz的频率下具有出色的一致性。对于没有集成调优存根的阵列。测量的混频器噪声温度为90+或-30 K,DSB混频器增益为-12.5+或-0.6 dB。用混合量子理论对测得的增益和偏置电压进行比较,显示出良好的定性一致性,表明该理论适用于高达500 GHz的Nb隧道结。间隙电压较低的阵列的噪声温度在495 GHz时为220K。该频率是减小的间隙频率的85%,这表明Nb超导体绝缘体-超导体(SIS)混频器至少可以在680 GHz的间隙频率下使用。

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