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High Temperature Josephson Bicrystal Junctions and Arrays for Metrological Applications

IEEE transactions on applied superconductivity(1999)

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摘要
Concerning metrological applications of high-temperature superconductor (HTS) Josephson junctions, we investigated the properties of gold shunted bicrystal YBCO junctions on yttria-stabilized zirconia (YSZ) and sapphire substrates. We focus on three important items that are related to the problem of parameter spreads: (a) the control of the shunt resistance-this parameter is dominated by the contact resistivity between the YBCO and the Au-a direct method for the measurement of this crucial parameter was applied; (b) the impact of the shunt resistance and the spread in junction resistance on the tolerable junction size and the frequency working regime for metrological arrays; and (c) the realization of series arrays with a high packing density of junctions using electron-beam-patterning. The parameter spreads are comparable to those of standard lithography processed junctions.
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Josephson effect,barium compounds,contact resistance,high-temperature superconductors,superconducting arrays,superconducting junction devices,yttrium compounds,YBaCuO,contact resistivity,electron-beam-patterning,frequency working regime,high temperature Josephson bicrystal junctions,junction resistance,junction size,metrological applications,packing density,parameter spreads,series arrays,shunt resistance,superconducting arrays
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