Abstract
We present a quantitative characterization of an electrically tunable Josephson junction defined in an InAs nanowire proximitized by an epitaxially-grown superconducting Al shell. The gate-dependence of the number of conduction channels and of the set of transmission coefficients are extracted from the highly nonlinear current-voltage characteristics. Although the transmissions evolve non-monotonically, the number of independent channels can be tuned, and configurations with a single quasi-ballistic channel achieved.
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Goffman, M. F., Urbina, C., Pothier, H., Nygard, J., Marcus, C. M., & Krogstrup, P. (2017). Conduction channels of an InAs-Al nanowire Josephson weak link. New Journal of Physics, 19(9). https://doi.org/10.1088/1367-2630/aa7641
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