Three-dimensional mapping of the altermagnetic spin splitting in CrSb

G Guowei Yang Z Zhanghuan Li S Sai Yang J Jiyuan Li H Hao Zheng (Dalian Institute of Chemical Physics, Chinese Academy of Sciences, 457 Zhongshan Road, Dalian 116023, China) W Weifan Zhu Z Ze Pan Y Yifu Xu S Saizheng Cao W Wenxuan Zhao (Section Storage of Electrochemical Energy, Radiation Science and Technology, Faculty of Applied Sciences) A Anupam Jana J Jiawen Zhang M Mao Ye Y Yu Song (Department of Chemistry, College of Science) L Lun-Hui Hu L Lexian Yang J Jun Fujii I Ivana Vobornik M Ming Shi H Huiqiu Yuan (Center for Correlated Matter, School of Physics) Y Yongjun Zhang Y Yuanfeng Xu Y Yang Liu

Abstract

Abstract Altermagnetism, a kind of collinear magnetism that is characterized by a momentum-dependent band and spin splitting without net magnetization, has recently attracted considerable interest. Finding altermagnetic materials with large splitting near the Fermi level necessarily requires three-dimensional k-space mapping. While this is crucial for spintronic applications and emergent phenomena, it remains challenging. Here, using synchrotron-based angle-resolved photoemission spectroscopy (ARPES), spin-resolved ARPES and model calculations, we uncover a large altermagnetic splitting, up to  ~1.0 eV, near the Fermi level in CrSb. We verify its bulk-type g-wave altermagnetism through systematic three-dimensional k-space mapping, which unambiguously reveals the altermagnetic symmetry and associated nodal planes. Spin-resolved ARPES measurements further verify the spin polarizations of the split bands near Fermi level. Tight-binding model analysis indicates that the large altermagnetic splitting arises from strong third-nearest-neighbor hopping mediated by Sb ions. The large band/spin splitting near Fermi level in metallic CrSb, together with its high T N (up to 705 K) and simple spin configuration, paves the way for exploring emergent phenomena and spintronic applications based on altermagnets.

Article Details

Volume / Issue Vol. 16, Issue 1
Published February 07, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (23)

G

Guowei Yang

Z

Zhanghuan Li

S

Sai Yang

J

Jiyuan Li

H

Hao Zheng

Dalian Institute of Chemical Physics, Chinese Academy of Sciences, 457 Zhongshan Road, Dalian 116023, China

W

Weifan Zhu

Z

Ze Pan

Y

Yifu Xu

S

Saizheng Cao

W

Wenxuan Zhao

Section Storage of Electrochemical Energy, Radiation Science and Technology, Faculty of Applied Sciences

A

Anupam Jana

J

Jiawen Zhang

M

Mao Ye

Y

Yu Song

Department of Chemistry, College of Science

L

Lun-Hui Hu

L

Lexian Yang

J

Jun Fujii

I

Ivana Vobornik

M

Ming Shi

H

Huiqiu Yuan

Center for Correlated Matter, School of Physics

Y

Yongjun Zhang

Y

Yuanfeng Xu

Y

Yang Liu