English

Observation of plaid-like spin splitting in a noncoplanar antiferromagnet

Materials Science 2024-02-20 v3

Abstract

Spatial, momentum and energy separation of electronic spins in condensed matter systems guides the development of novel devices where spin-polarized current is generated and manipulated. Recent attention on a set of previously overlooked symmetry operations in magnetic materials leads to the emergence of a new type of spin splitting, enabling giant and momentum-dependent spin polarization of energy bands on selected antiferromagnets. Despite the ever-growing theoretical predictions, the direct spectroscopic proof of such spin splitting is still lacking. Here, we provide solid spectroscopic and computational evidence for the existence of such materials. In the noncoplanar antiferromagnet MnTe2_2, the in-plane components of spin are found to be antisymmetric about the high-symmetry planes of the Brillouin zone, comprising a plaid-like spin texture in the antiferromagnetic (AFM) ground state. Such an unconventional spin pattern, further found to diminish at the high-temperature paramagnetic state, stems from the intrinsic AFM order instead of spin-orbit coupling (SOC). Our finding demonstrates a new type of quadratic spin texture induced by time-reversal breaking, placing AFM spintronics on a firm basis and paving the way for studying exotic quantum phenomena in related materials.

Keywords

Cite

@article{arxiv.2303.04549,
  title  = {Observation of plaid-like spin splitting in a noncoplanar antiferromagnet},
  author = {Yu-Peng Zhu and Xiaobing Chen and Xiang-Rui Liu and Yuntian Liu and Pengfei Liu and Heming Zha and Gexing Qu and Caiyun Hong and Jiayu Li and Zhicheng Jiang and Xiao-Ming Ma and Yu-Jie Hao and Ming-Yuan Zhu and Wenjing Liu and Meng Zeng and Sreehari Jayaram and Malik Lenger and Jianyang Ding and Shu Mo and Kiyohisa Tanaka and Masashi Arita and Zhengtai Liu and Mao Ye and Dawei Shen and Jörg Wrachtrup and Yaobo Huang and Rui-Hua He and Shan Qiao and Qihang Liu and Chang Liu},
  journal= {arXiv preprint arXiv:2303.04549},
  year   = {2024}
}

Comments

Version 3, 49 pages, 4 main figures, 13 extended data figures and 2 extended data tables. Nature in press (2024)