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Eliminating Quantum Phase Slips in Superconducting Nanowires

journal contribution
posted on 2024-11-02, 16:23 authored by Jan Nicolas Voss, Yannick Schon, Micha Wildermuth, Dominik Dorer, Jared ColeJared Cole, Hannes Rotzinger, Alexey Ustinov
In systems with reduced dimensions, quantum fluctuations have a strong influence on the electronic conduction, even at very low temperatures. In superconductors, this is especially interesting, since the coherent state of the superconducting electrons strongly interacts with these fluctuations and therefore is a sensitive tool to study them. In this paper, we report on comprehensive measurements of superconducting nanowires in the quantum phase slip regime. Using an intrinsic electromigration process, we have developed a method to lower the nanowire's resistance in situ and therefore eliminate quantum phase slips in small consecutive steps. We observe critical (Coulomb) blockade voltages and superconducting critical currents, in good agreement with theoretical models. Between these two regimes, we find a continuous transition displaying a nonlinear metallic-like behavior. The reported intrinsic electromigration technique is not limited to low temperatures, as we find a similar change in resistance that spans over 3 orders of magnitude also at room temperature. Aside from superconducting quantum circuits, such a technique to reduce the resistance may also have applications in modern electronic circuits.

Funding

ARC Centre of Excellence in Future Low Energy Electronics Technologies

Australian Research Council

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History

Related Materials

  1. 1.
    DOI - Is published in 10.1021/acsnano.0c08721
  2. 2.
    ISSN - Is published in 19360851

Journal

ACS Nano

Volume

15

Start page

4108

End page

4114

Total pages

7

Publisher

American Chemical Society

Place published

United States

Language

English

Copyright

© 2021 American Chemical Society.

Former Identifier

2006105524

Esploro creation date

2021-04-21

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