论文标题

蒸发式脱发单层磁铁磁铁的旋转挫败感的证据

Evidence of Spin Frustration in Vanadium Diselenide Monolayer Magnet

论文作者

Wong, Ping Kwan Johnny, Zhang, Wen, Bussolotti, Fabio, Yin, Xinmao, Herng, Tun Seng, Zhang, Lei, Huang, Yu Li, Vinai, Giovanni, Krishnamurthi, Sridevi, Bukhvalov, Danil W, Zheng, Yu Jie, Chua, Rebekah, Diaye, Alpha T N, Morton, Simon A., Yang, Chao-Yao, Yang, Kui-Hon Ou, Torelli, Piero, Chen, Wei, Goh, Kuan Eng Johnson, Ding, Jun, Lin, Minn-Tsong, Brocks, Geert, de Jong, Michel P, Neto, Antonio H Castro, Wee, Andrew Thye Shen

论文摘要

单层VSE2具有电荷密度波和磁性现象,代表了金属二维过渡金属二色质(2D-TMD)家族中独特的范德华磁铁。在此,通过原位显微镜和光谱技术,包括扫描隧道显微镜/光谱扫描,同步子X射线和角度分辨光发射以及X射线吸收,直接的光谱仪,通过识别金属1T-phase和VanAdium 3DDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDDD DDDD DDDD DDD DDDD签名建立分子梁外延。元素特异性的X射线磁圆形二分性二色性,均与磁化敏感性测量相辅相成,进一步揭示了单层VSE2作为沮丧的磁体,其旋转表现出微妙的相关性,尽管没有远程磁性降低到2 K,且最多可达7 t磁场。该观察结果归因于铁磁和抗铁磁基态的相对稳定性,这是由于其原子尺度的结构特征(例如旋转障碍和边缘)引起的。这项研究的结果在寻找外来的低维量子现象时,扩展了对金属2D-TMD的当前理解,并刺激了对范德华单层磁体的进一步理论和实验研究。

Monolayer VSe2, featuring both charge density wave and magnetism phenomena, represents a unique van der Waals magnet in the family of metallic two-dimensional transition-metal dichalcogenides (2D-TMDs). Herein, by means of in-situ microscopic and spectroscopic techniques, including scanning tunneling microscopy/spectroscopy, synchrotron X-ray and angle-resolved photoemission, and X-ray absorption, direct spectroscopic signatures are established, that identify the metallic 1T-phase and vanadium 3d1 electronic configuration in monolayer VSe2 grown on graphite by molecular-beam epitaxy. Element-specific X-ray magnetic circular dichroism, complemented with magnetic susceptibility measurements, further reveals monolayer VSe2 as a frustrated magnet, with its spins exhibiting subtle correlations, albeit in the absence of a long-range magnetic order down to 2 K and up to a 7 T magnetic field. This observation is attributed to the relative stability of the ferromagnetic and antiferromagnetic ground states, arising from its atomic-scale structural features, such as rotational disorders and edges. The results of this study extend the current understanding of metallic 2D-TMDs in the search for exotic low-dimensional quantum phenomena, and stimulate further theoretical and experimental studies on van der Waals monolayer magnets.

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