English

Multiterminal ballistic Josephson junctions coupled to normal leads

Mesoscale and Nanoscale Physics 2023-01-09 v3

Abstract

Multiterminal Josephson junctions have aroused considerable theoretical interest recently and numerous works aim at putting the predictions of correlations among Coopers (i.e. the so-called quartets) and simulation of topological matter to the test of experiments. The present paper is motivated by recent experimental investigation from the Harvard group reporting h/4eh/4e-periodic quartet signal in a four-terminal configuration containing a loop pierced by magnetic flux, together with inversion controlled by the bias voltage, i.e. the quartet signal can be larger at half-flux quantum than in zero magnetic field. Here, we theoretically focus on devices consisting of finite-size quantum dots connected to four superconducting and to a normal lead. In addition to presenting numerical calculations of the quartet signal within a simplified modeling, we reduce the device to a non-Hermitian Hamiltonian in the infinite-gap limit. Then, relaxation has the surprising effect of producing sharp peaks and log-normal variations in the voltage-sensitivity of the quartet signal in spite of the expected moderate fluctuations in the two-terminal DC-Josephson current. The phenomenon is reminiscent of a resonantly driven harmonic oscillator having amplitude inverse proportional to the damping rate, and of the thermal noise of a superconducting weak link, inverse proportional to the Dynes parameter. Perspectives involve quantum bath engineering multiterminal Josephson junctions in the circuits of cavity quantum electrodynamics.

Keywords

Cite

@article{arxiv.2110.09870,
  title  = {Multiterminal ballistic Josephson junctions coupled to normal leads},
  author = {Régis Mélin},
  journal= {arXiv preprint arXiv:2110.09870},
  year   = {2023}
}

Comments

23 pages, 11 figures, second revision of the manuscript, changes in the presentation and new section on the low-voltage limit

R2 v1 2026-06-24T07:00:13.230Z