Song Feilong, Lv Yanpei, Sun Yu-Jia, Pang Simin, Chang Haonan, Guan Shan, Lai Jia-Min, Wang Xu-Jie, Wu Bang, Hu Chengyong, Yuan Zhiliang, Zhang Jun
State Key Laboratory of Superlattices and Microstructures, Institute of Semiconductors, Chinese Academy of Sciences, Beijing, China.
Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing, China.
Nat Commun. 2024 Sep 7;15(1):7841. doi: 10.1038/s41467-024-52220-w.
The effect of external magnetic fields on the behavior of the Zhang-Rice exciton in NiPS, which captures the physics of spin-orbital entanglement in 2D XY-type antiferromagnets, remains unclear. This study presents systematic study of angle-resolved and polarization-resolved magneto-optical photoluminescence spectra of NiPS in the Voigt geometry. We observed highly anisotropic, non-linear Zeeman splitting and polarization rotation of the Zhang-Rice exciton, which depends on the direction and intensity of the magnetic field and can be attributed to the spin-orbital coupling and field-induced spin reorientation. Furthermore, above the critical magnetic field, we detected additional splitting of the exciton peaks, indicating the coexistence of various orientations of Néel vector. This study characterizes orbital change of Zhang-Rice exciton and field-induced spin-reorientation phase transitions in a 2D hexagonal XY-type antiferromagnet, and it further demonstrates the continuous manipulation of the spin and polarization of the Zhang-Rice exciton.
外部磁场对NiPS中张-赖斯激子行为的影响尚不清楚,而张-赖斯激子捕捉了二维XY型反铁磁体中的自旋-轨道纠缠物理。本研究对Voigt几何结构中NiPS的角分辨和偏振分辨磁光致发光光谱进行了系统研究。我们观察到张-赖斯激子具有高度各向异性、非线性塞曼分裂和偏振旋转,这取决于磁场的方向和强度,可归因于自旋-轨道耦合和场致自旋重取向。此外,在临界磁场以上,我们检测到激子峰的额外分裂,表明奈尔矢量存在各种取向的共存。本研究表征了二维六角XY型反铁磁体中张-赖斯激子的轨道变化和场致自旋重取向相变,并进一步证明了对张-赖斯激子的自旋和偏振的连续操控。