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Prediction of intrinsic topological superconductivity in Mn-doped GeTe monolayer from first-principles
Physicsnpj Computational Materials

Prediction of intrinsic topological superconductivity in Mn-doped GeTe monolayer from first-principles

X. Zhang, K. Jin, et al.

This groundbreaking research by Xiaoming Zhang, Kyung-Hwan Jin, Jiahao Mao, Mingwen Zhao, Zheng Liu, and Feng Liu introduces a first-principles method to predict topological superconductors. The study identifies a Mn-doped GeTe monolayer as a Class D TSC, showcasing unique chiral Majorana edge modes and a significant TSC phase at low temperatures, paving the way for future experimental explorations in this exciting area.... show more
Abstract
The recent discovery of topological superconductors (TSCs) has sparked enormous interest. The realization of TSC requires a delicate tuning of multiple microscopic parameters, which remains a great challenge. Here, we develop a first-principles approach to quantify realistic conditions of TSC by solving self-consistently Bogoliubov-de Gennes equation based on a Wannier function construction of band structure, in presence of Rashba spin-orbit coupling, Zeeman splitting and electron-phonon coupling. We further demonstrate the power of this method by predicting the Mn-doped GeTe (Ge1−xMnxTe) monolayer—a well-known dilute magnetic semiconductor showing superconductivity under hole doping—to be a Class D TSC with Chern number of −1 and chiral Majorana edge modes. By constructing a first-principles phase diagram in the parameter space of temperature and Mn concentration, we propose the TSC phase can be induced at a lower-limit transition temperature of ~40 mK and the Mn concentration of x ~ 0.015%. Our approach can be generally applied to TSCs with a phonon-mediated pairing, providing useful guidance for future experiments.
Publisher
npj Computational Materials
Published On
Mar 26, 2021
Authors
Xiaoming Zhang, Kyung-Hwan Jin, Jiahao Mao, Mingwen Zhao, Zheng Liu, Feng Liu
Tags
topological superconductorsBogoliubov-de GennesRashba spin-orbit couplingChern numberMajorana edge modesMn-doped GeTeelectron-phonon coupling
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