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磁性外尔半金属CoSnS中的局域自旋轨道极化子

Localized spin-orbit polaron in magnetic Weyl semimetal CoSnS.

作者信息

Xing Yuqing, Shen Jianlei, Chen Hui, Huang Li, Gao Yuxiang, Zheng Qi, Zhang Yu-Yang, Li Geng, Hu Bin, Qian Guojian, Cao Lu, Zhang Xianli, Fan Peng, Ma Ruisong, Wang Qi, Yin Qiangwei, Lei Hechang, Ji Wei, Du Shixuan, Yang Haitao, Wang Wenhong, Shen Chengmin, Lin Xiao, Liu Enke, Shen Baogen, Wang Ziqiang, Gao Hong-Jun

机构信息

Beijing National Center for Condensed Matter Physics and Institute of Physics, Chinese Academy of Sciences, Beijing, 100190, People's Republic of China.

School of Physical Sciences, University of Chinese Academy of Sciences, Beijing, 100190, People's Republic of China.

出版信息

Nat Commun. 2020 Nov 5;11(1):5613. doi: 10.1038/s41467-020-19440-2.

Abstract

The kagome lattice CoSnS exhibits the quintessential topological phenomena of a magnetic Weyl semimetal such as the chiral anomaly and Fermi-arc surface states. Probing its magnetic properties is crucial for understanding this correlated topological state. Here, using spin-polarized scanning tunneling microscopy/spectroscopy (STM/S) and non-contact atomic force microscopy (nc-AFM) combined with first-principle calculations, we report the discovery of localized spin-orbit polarons (SOPs) with three-fold rotation symmetry nucleated around single S-vacancies in CoSnS The SOPs carry a magnetic moment and a large diamagnetic orbital magnetization of a possible topological origin associated relating to the diamagnetic circulating current around the S-vacancy. Appreciable magneto-elastic coupling of the SOP is detected by nc-AFM and STM. Our findings suggest that the SOPs can enhance magnetism and more robust time-reversal-symmetry-breaking topological phenomena. Controlled engineering of the SOPs may pave the way toward practical applications in functional quantum devices.

摘要

Kagome晶格CoSnS展现出磁外尔半金属典型的拓扑现象,如手征反常和费米弧表面态。探究其磁性对于理解这种关联拓扑态至关重要。在此,我们结合第一性原理计算,使用自旋极化扫描隧道显微镜/光谱(STM/S)和非接触原子力显微镜(nc-AFM),报告了在CoSnS中围绕单个S空位形成的具有三重旋转对称性的局域自旋轨道极化子(SOP)的发现。这些SOP携带磁矩以及与S空位周围抗磁环流相关的、可能具有拓扑起源的大抗磁轨道磁化。通过nc-AFM和STM检测到了SOP明显的磁弹性耦合。我们的发现表明,SOP可以增强磁性以及更稳健的时间反演对称性破缺拓扑现象。对SOP的可控调控可能为功能量子器件的实际应用铺平道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a89b/7644724/20419457b831/41467_2020_19440_Fig1_HTML.jpg

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