Title :
Performance of Arrays of SIS Junctions in Heterodyne Mixers
Author :
McGrath, W.R. ; Richards, P.L.
fDate :
4/1/1987 12:00:00 AM
Abstract :
We have made a systematic experimental study of the performance of millimeter-wave quasiparticle heterodyne mixers which use arrays of SIS tunnel junctions. Sets of arrays with N =1, 5, 10, 25, and 50 junctions in series were fabricated by photolithography. All of the arrays in a given set were made on a single silicon wafer so that their response time parameter omegaSRNC would be the same. Junction areas were scaled so that the total impedance was the same for each array in a set. Sets of arrays from four wafers with values of omegaSRNC ranging from 2.6 to 13 were evaluated in mixers at 33 and 36 GHz. These measurements showed that the signal power required to saturate the mixers varies as N2 and that the conversion efficiency is nearly independent of N for all values of omegaSRNC. The mixer noise temperature is independent of N for large values of omegaSRNC. Therefore, the dynamic range of an SIS quasiparticle mixer can increase in proportion to N2. For small values of as omegaSRNC, however, the mixer noise increases systematically with N. This correlation suggests that the junction capacitance affects the coupling between junctions that can contribute to the noise.
Keywords :
Capacitance; Delay; Impedance; Lithography; Microwave antenna arrays; Noise measurement; Physics; Power measurement; Radio frequency; Temperature;
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
DOI :
10.1109/TMTT.1987.1133667