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Observation of Spin Splitting in Room-Temperature Metallic Antiferromagnet CrSb

Materials Science 2024-11-07 v1

Abstract

Recently, unconventional antiferromagnets that enable the splitting of electronic spins have been theoretically proposed and experimentally realized, where the magnetic sublattices containing moments pointing at different directions are connected by a novel set of symmetries. Such spin splitting (SS) is substantial, kk-dependent, and independent of the spin-orbit coupling strength, making these magnets promising materials for antiferromagnetic spintronics. Here, combined with angle-resolved photoemission spectroscopy (ARPES) and density functional theory (DFT) calculations, we perform a systematic study on CrSb, a metallic spin-split antiferromagnet candidate with TNT_N = 703 K. Our data reveals the electronic structure of CrSb along both out-of-plane and in-plane momentum directions, which renders anisotropic kk-dependent SS and agrees well with the calculational results. The magnitude of such SS reaches up to at least 0.8 eV at non-high-symmetry momentum points, which is significantly higher than the largest known SOC-induced SS. This compound expands the choice of materials in the field of antiferromagnetic spintronics and is likely to stimulate subsequent investigations of high-efficiency spintronic devices that are functional at room temperature.

Keywords

Cite

@article{arxiv.2405.12679,
  title  = {Observation of Spin Splitting in Room-Temperature Metallic Antiferromagnet CrSb},
  author = {Meng Zeng and Ming-Yuan Zhu and Yu-Peng Zhu and Xiang-Rui Liu and Xiao-Ming Ma and Yu-Jie Hao and Pengfei Liu and Gexing Qu and Yichen Yang and Zhicheng Jiang and Kohei Yamagami and Masashi Arita and Xiaoqian Zhang and Tian-Hao Shao and Yue Dai and Kenya Shimada and Zhengtai Liu and Mao Ye and Yaobo Huang and Qihang Liu and Chang Liu},
  journal= {arXiv preprint arXiv:2405.12679},
  year   = {2024}
}

Comments

14 pages, 4 figures