铁磁性
物理
拓扑(电路)
数学
量子力学
组合数学
磁化
磁场
作者
Jiameng Wang,A. Ernst,V. N. Antonov,Qi Jiang,Haoji Qian,De-Yang Wang,Jiefeng Cao,Fangyuan Zhu,Shan Qiao,Mao Ye
标识
DOI:10.1038/s42005-024-01838-9
摘要
Abstract Recently discovered Mn-based kagome materials, such as RMn 6 Sn 6 (R = rare-earth element), exhibit the coexistence of topological electronic states and long-range magnetic order, offering a platform for studying quantum phenomena. However, understanding the electronic and magnetic properties of these materials remains incomplete. Here, we investigate the electronic structure and magnetic properties of GdMn 6 Sn 6 using x-ray magnetic circular dichroism, photoemission spectroscopy, and theoretical calculations. We observe localized electronic states from spin frustration in the Mn-based kagome lattice and induced magnetic moments in the nonmagnetic element Sn experimentally, which originate from the Sn- $$p$$ p and Mn- $$d$$ d orbital hybridization. Our calculations also reveal ferromagnetic coupling within the kagome Mn-Mn layer, driven by double exchange interaction. This work provides insights into the mechanisms of magnetic interaction and magnetic tuning in the exploration of topological quantum materials.
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