English

Superconductive coupling and Josephson diode effect in selectively-grown topological insulator based three-terminal junctions

Mesoscale and Nanoscale Physics 2024-10-28 v1

Abstract

The combination of an ordinary s-type superconductor with three-dimensional topological insulators creates a promising platform for fault-tolerant topological quantum computing circuits based on Majorana braiding. The backbone of the braiding mechanism are three-terminal Josephson junctions. It is crucial to understand the transport in these devices for further use in quantum computing applications. We present low-temperature measurements of topological insulator-based three-terminal Josephson junctions fabricated by a combination of selective-area growth of Bi0.8Sb1.2Te3\mathrm{Bi_{0.8}Sb_{1.2}Te_3} and shadow mask evaporation of Nb. This approach allows for the in-situ fabrication of Josephson junctions with an exceptional interface quality, important for the study of the proximity-effect. We map out the transport properties of the device as a function of bias currents and prove the coupling of the junctions by the observation of a multi-terminal geometry induced diode effect. We find good agreement of our findings with a resistively and capacitively shunted junction network model.

Keywords

Cite

@article{arxiv.2410.19311,
  title  = {Superconductive coupling and Josephson diode effect in selectively-grown topological insulator based three-terminal junctions},
  author = {Gerrit Behner and Abdur Rehman Jalil and Alina Rupp and Hans Lüth and Detlev Grützmacher and Thomas Schäpers},
  journal= {arXiv preprint arXiv:2410.19311},
  year   = {2024}
}

Comments

9 pages, 5 figures, 6 pages supplemental material including 7 figures

R2 v1 2026-06-28T19:35:10.370Z