• Board
  • Research Highlight
Research HighLight
Research HighLight

[Prof. Gil-Ho Lee] Twisted van der Waals Josephson Junction Based on a…

FILES
  • No attach File
Journal Nano Lett. 2021, 21, 24, 10469–10477
Professor in chargeProf. Gil-Ho Lee
Lookup486
Author최고관리자
Release date2021-12-09

main text

a1a03056d47a360efc029721c54d4bd2_1641363426_6803.png
 

Caption :  (Left) Schematic of the Bi2Sr2CaCu2O8+x (Bi-2212) twisted van der Waals Josephson junction. (Right) Schematic of the junction interface and twisted d-wave superconducting gap of top and bottom Bi-2212 in momentum space. 


Twisted van der Waals Josephson Junction Based on a High-Tc Superconductor


Stacking two-dimensional van der Waals (vdW) materials rotated with respect to each other show versatility for studying exotic quantum phenomena. In particular, anisotropic layered materials have great potential for such twistronics applications, providing high tunability. Here, we report anisotropic superconducting order parameters in twisted Bi2Sr2CaCu2O8+x (Bi-2212) vdW junctions with an atomically clean vdW interface, achieved using the microcleave-and-stack technique. The vdW junctions with twist angles of 0° and 90° showed the maximum Josephson coupling, comparable to that of intrinsic Josephson junctions. As the twist angle approaches 45°, Josephson coupling is suppressed, and eventually disappears at 45°. The observed twist angle dependence of the Josephson coupling can be explained quantitatively by theoretical calculation with the d-wave superconducting order parameter of Bi-2212 and finite tunneling incoherence of the junction. Our results revealed the anisotropic nature of Bi-2212 and provided a novel fabrication technique for vdW-based twistronics platforms compatible with air-sensitive vdW materials.







top_btn
logo_mobile close_mobile