Parametric Characterization and Macroscopic Quantum Tunneling of \hbox/\hbox/\hbox Josephson Junctions
Parameters of Nb/AlO x /Nb Josephson including its critical current and capacitance which determine the dynamic energy consumption and speed of the superconducting electronics have been measured. The critical current of a 22 × 22 μm 2 junction is 1801 ± 52 μA calculated from the dependent curve betw...
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Veröffentlicht in: | IEEE transactions on applied superconductivity 2014-10, Vol.24 (5), p.1-5 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Parameters of Nb/AlO x /Nb Josephson including its critical current and capacitance which determine the dynamic energy consumption and speed of the superconducting electronics have been measured. The critical current of a 22 × 22 μm 2 junction is 1801 ± 52 μA calculated from the dependent curve between the lifetime of zero-voltage and switching current. The specific capacitance is 0.051 ± 0.008 pF/μm 2 obtained by observing Fiske self-resonant step when applied several Gauss magnetic field. Critical current distributions had been measured as a function of temperature from 900 mK to 40 mK. The distribution widths become independent of temperature below 200 mK, which indicates the transition between thermal activation and macroscopic quantum tunneling of junction phase. |
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ISSN: | 1051-8223 1558-2515 |
DOI: | 10.1109/TASC.2014.2349900 |