Realizing a topological diode effect on the surface of a topological Kondo insulator

J Jiawen Zhang Z Zhenqi Hua C Chengwei Wang (Department of Applied Chemistry, School of Engineering, University of Toyama, Gofuku 3190, Toyama 930-8555, Japan) M Michael Smidman (Center for Correlated Matter, School of Physics) D David Graf S Sean Thomas (Los Alamos National Laboratory) P Priscila F. S. Rosa (Los Alamos National Laboratory) S Steffen Wirth (Max-Planck-Institute for Chemical Physics of Solids) X Xi Dai (Department of Physics) P Peng Xiong H Huiqiu Yuan (Center for Correlated Matter, School of Physics) X Xiaoyu Wang L Lin Jiao (Department of Chemistry)

Abstract

Introducing the concept of topology into material science has sparked a revolution from classic electronic and optoelectronic devices to topological quantum devices. The latter has potential for transferring energy and information with unprecedented efficiency. Here, we demonstrate a topological diode effect on the surface of a three-dimensional material, SmB 6 , a candidate topological Kondo insulator. The diode effect is evidenced by pronounced rectification and photogalvanic effects under electromagnetic modulation and radiation at radio frequency. Our experimental results and modeling suggest that these prominent effects are intimately tied to the spatially inhomogeneous formation of topological surface states (TSS) at the intermediate temperature. This work provides a manner of breaking the mirror symmetry (in addition to the inversion symmetry), resulting in the formation of pn -junctions between puddles of metallic TSS. This effect paves the way for efficient current rectifiers or energy-harvesting devices working down to radio frequency range at low temperature, which could be extended to high temperatures using other topological insulators with large bulk gap.

Article Details

Volume / Issue Vol. 122, Issue 12
Published March 25, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (13)

J

Jiawen Zhang

Z

Zhenqi Hua

C

Chengwei Wang

Department of Applied Chemistry, School of Engineering, University of Toyama, Gofuku 3190, Toyama 930-8555, Japan

M

Michael Smidman

Center for Correlated Matter, School of Physics

D

David Graf

S

Sean Thomas

Los Alamos National Laboratory

P

Priscila F. S. Rosa

Los Alamos National Laboratory

S

Steffen Wirth

Max-Planck-Institute for Chemical Physics of Solids

X

Xi Dai

Department of Physics

P

Peng Xiong

H

Huiqiu Yuan

Center for Correlated Matter, School of Physics

X

Xiaoyu Wang

L

Lin Jiao

Department of Chemistry