English

Gate Tunable Josephson Diode Effect in Josephson Junctions made from InAs Nanosheets

Mesoscale and Nanoscale Physics 2025-04-17 v2

Abstract

We report the observation of Josephson diode effect (JDE) in hybrid devices made from semiconductor InAs nanosheets and superconductor Al contacts. By applying an in-plane magnetic field (BxyB_{\mathrm{xy}}), we detect non-reciprocal superconducting switching current as well as non-reciprocal superconducting retrapping current. The strength of the JDE depends on the angle between the in-plane magnetic field and the bias current (IbI_{\mathrm{b}}), reaching its maximum when BxyIbB_{\mathrm{xy}} \perp I_{\mathrm{b}} and dropping to nearly zero when BxyIbB_{\mathrm{xy}}\parallel I_{\mathrm{b}}. Additionally, the diode efficiency is tunable via an electrostatic gate with a complete suppression at certain gate voltages. Our findings indicate that the observed JDE in InAs nanosheet-based Josephson junctions most likely arises from the Rashba spin-orbit interaction (SOI) in the nanosheets. Such gate-tunable JDE in Josephson junctions made from semiconductor materials with SOI is useful not only for constructing advanced superconducting electronics but also for detecting novel superconducting states.

Keywords

Cite

@article{arxiv.2501.15523,
  title  = {Gate Tunable Josephson Diode Effect in Josephson Junctions made from InAs Nanosheets},
  author = {Shili Yan and Yi Luo and Haitian Su and Han Gao and Xingjun Wu and Dong Pan and Jianhua Zhao and Ji-Yin Wang and Hongqi Xu},
  journal= {arXiv preprint arXiv:2501.15523},
  year   = {2025}
}
R2 v1 2026-06-28T21:18:16.453Z