Litcius/Paper detail

Current-induced breakdown of the quantum anomalous Hall effect

Gertjan Lippertz, Andrea Bliesener, Anjana Uday, L. M. C. Pereira, A. A. Taskin, Yoichi Ando

2022Physical review. B./Physical review. B37 citationsDOIOpen Access PDF

Abstract

The quantum anomalous Hall effect (QAHE) realizes dissipationless longitudinal resistivity and quantized Hall resistance without the need of an external magnetic field. However, when reducing the device dimensions or increasing the current density, an abrupt breakdown of the dissipationless state occurs with a relatively small critical current, limiting the applications of the QAHE. We investigate the mechanism of this breakdown by studying multiterminal devices and identified that the electric field created between opposing chiral edge states lies at the origin. We propose that electric-field-driven percolation of two-dimensional charge puddles in the gapped surface states of compensated topological-insulator films is the most likely cause of the breakdown.

Topics & Concepts

Quantum Hall effectCurrent (fluid)Condensed matter physicsPhysicsHall effectEngineering physicsQuantum mechanicsMagnetic fieldThermodynamicsQuantum and electron transport phenomenaTopological Materials and PhenomenaGraphene research and applications