English

Josephson diode effects in twisted nodal superconductors

Superconductivity 2024-04-30 v2 Mesoscale and Nanoscale Physics Strongly Correlated Electrons

Abstract

Recent Josephson tunneling experiments on twisted flakes of high-TcT_c cuprate superconductor Bi2_2Sr2_2CaCu2_2O8+x_{8+x} revealed a non-reciprocal behavior of the critical interlayer Josephson current - i.e., a Josephson diode effect. Motivated by these findings we study theoretically the emergence of the Josephson diode effect in twisted interfaces between nodal superconductors, and highlight a strong dependence on the twist angle θ\theta and damping of the junction. In all cases, the theory predicts diode efficiency that vanishes exactly at θ=45\theta = 45^\circ and has a strong peak at a twist angle close to θ=45\theta = 45^\circ, consistent with experimental observations. Near 4545^\circ, the junction breaks time-reversal symmetry T{\cal T} spontaneously. We find that for underdamped junctions showing hysteretic behavior, this results in a \emph{dynamical} Josephson diode effect in a part of the T{\cal T}-broken phase. The direction of the diode is trainable in this case by sweeping the external current bias. This effect provides a sensitive probe of spontaneous T{\cal T}-breaking. We then show that explicit T{\cal T}-breaking perturbations with the symmetry of a magnetic field perpendicular to the junction plane lead to a {\em thermodynamic} diode effect that survives even in the overdamped limit. We discuss an experimental protocol to probe the double-well structure in the Josephson free energy that underlies the tendency towards spontaneous T{\cal T}-breaking even if T{\cal T} is broken explicitly. Finally, we show that in-plane magnetic fields can control the diode effect in the short junction limit, and predict the signatures of explicit T{\cal T}-breaking in Shapiro steps.

Keywords

Cite

@article{arxiv.2307.01261,
  title  = {Josephson diode effects in twisted nodal superconductors},
  author = {Pavel A. Volkov and Étienne Lantagne-Hurtubise and Tarun Tummuru and Stephan Plugge and J. H. Pixley and Marcel Franz},
  journal= {arXiv preprint arXiv:2307.01261},
  year   = {2024}
}