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February 28, 20260 citationsOpen Access

Spontaneous supercurrents and vortex depinning in two-dimensional arrays of 𝜑0 Josephson junctions

SRS. ReinhardtAPAlexander G. PennerJBJ. Berger

Key Points

  • The research aims to explore the properties of two-dimensional arrays of multiterminal Josephson junctions, particularly focusing on spontaneous supercurrents and vortex dynamics.
  • Investigated two-dimensional arrays of ballistic multiterminal Josephson junctions under varying magnetic fields.
  • Analyzed phase differences and vortex behaviors in relation to a ratchet-like pinning potential.
  • Measured vortex depinning currents and their dependence on vortex density and frustration parameter.
  • Observed nonreciprocal vortex depinning currents when subjected to an in-plane magnetic field.
  • Identified the enhancement of the ratchet effect by tuning vortex density to specific values of the frustration parameter.
  • Noted a sign reversal of the ratchet effect near a frustration value of 1/3.

Abstract

Two-dimensional arrays of ballistic Josephson junctions are important as model systems for synthetic quantum materials. Here, we investigate arrays of multiterminal junctions which exhibit a phase difference 𝜑0 at zero current. When applying an in-plane magnetic field, we observe nonreciprocal vortex depinning currents. We explain this effect in terms of a ratchetlike pinning potential, which is induced by spontaneous supercurrent loops. Supercurrent loops arise in multiterminal 𝜑0 junction arrays as a consequence of next-nearest-neighbor Josephson coupling. Tuning the density of vortices to commensurate values of the frustration parameter results in an enhancement of the ratchet effect. In addition, we find a surprising sign reversal of the ratchet effect near frustration 1/3. Our work calls for the search for novel magnetic structures in artificial crystals in the absence of time-reversal symmetry.

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Cite This Study

Reinhardt et al. (2025) studied this question.

synapsesocial.com/papers/69a286950a974eb0d3c019cfhttps://doi.org/10.17169/refubium-51051
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