Giant spin-splitting and tunable spin-momentum locked transport in room temperature collinear antiferromagnetic semimetallic CrO monolayer

Author:

Chen Xin12ORCID,Wang Duo23ORCID,Li Linyang4ORCID,Sanyal Biplab2ORCID

Affiliation:

1. Department of Physics and Shenzhen Institute for Quantum Science & Engineering, Southern University of Science and Technology 1 , Shenzhen, Guangdong 518055, China

2. Department of Physics and Astronomy, Uppsala University 2 , Box 516, Uppsala 751 20, Sweden

3. Faculty of Applied Sciences, Macao Polytechnic University 3 , Macao SAR 999078, China

4. School of Science, Hebei University of Technology 4 , Tianjin 300401, China

Abstract

In this work, we present theoretical predictions of a two-dimensional collinear antiferromagnetic semimetal, CrO, which exhibits a giant spin-split band structure, spin-momentum locked transport properties, and a high Néel temperature. Specifically, CrO features two pairs of spin-polarized anisotropic Weyl points at the Fermi level. By manipulating the position of these Weyl points with strain, we demonstrate that four different antiferromagnetic spintronic states with zero net magnetic moments can be achieved, including semimetals with two spin-polarized transport channels, half-semimetals, semiconductors with two spin-polarized transport channels, and half-semiconductors. The strain-induced semiconducting state also preserves the ultra-high carrier mobility of Weyl points, and the bandgap can be easily tuned. These findings offer a good avenue in spintronics without net magnetic moment or strong spin–orbit coupling and could lead to the development of antiferromagnetic materials for spintronic applications.

Funder

Vetenskapsrådet

Natural Science Foundation of Hebei Province

Carl Tryggers Stiftelse för Vetenskaplig Forskning

Macao Polytechnic University

Publisher

AIP Publishing

Subject

Physics and Astronomy (miscellaneous)

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