English

Magnetointerferometry of multiterminal Josephson junctions

Superconductivity 2024-03-21 v2 Mesoscale and Nanoscale Physics

Abstract

We report a theoretical study of multiterminal Josephson junctions under the influence of a magnetic field BB. We consider a ballistic rectangular two-dimensional metal N0N_0 connected by the edges to the left, right, top and bottom superconductors SLS_L, SRS_R, STS_T and SBS_B, respectively. We numerically calculate in the large-gap approximation the critical current IcI_c versus BB between the left and right SLS_L and SRS_R for various aspect ratios, with the top and bottom STS_T and SBS_B playing the role of superconducting mirrors. We find the critical current IcI_c to be enhanced by orders of magnitude, especially at long distance, due to the phase rigidity provided by the mirrors. We obtain superconducting quantum interference device-like magnetic oscillations. With symmetric couplings, the self-consistent superconducting phase variables of the top and bottom mirrors take the values 00 or π\pi, as for emerging Ising degrees of freedom. We propose a simple effective Josephson junction circuit model that is compatible with these microscopic numerical calculations. From the Ic(B)I_c(B) patterns we infer where the supercurrent flows in various device geometries. In particular in the elongated geometry, we show that the supercurrent flows between all pairs of contacts, which allows exploring the full phase space of the relevant phase differences.

Keywords

Cite

@article{arxiv.2311.12964,
  title  = {Magnetointerferometry of multiterminal Josephson junctions},
  author = {Régis Mélin and Clemens B. Winkelmann and Romain Danneau},
  journal= {arXiv preprint arXiv:2311.12964},
  year   = {2024}
}

Comments

15 pages, 6 figures, minor modifications

R2 v1 2026-06-28T13:27:55.479Z