Evidence of Spin Frustration in a Vanadium Diselenide Monolayer Magnet.

Wong, Ping Kwan Johnny; Zhang, Wen; Bussolotti, Fabio; Yin, Xinmao; Herng, Tun Seng; Zhang, Lei; Huang, Yu Li; Vinai, Giovanni et al. · Adv Mater · 2019

basic_science · Level V

Where this comes from

Abstract

Monolayer VSe<sub>2</sub> , featuring both charge density wave and magnetism phenomena, represents a unique van der Waals magnet in the family of metallic 2D transition-metal dichalcogenides (2D-TMDs). Herein, by means of in situ microscopy 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 3d<sup>1</sup> electronic configuration in monolayer VSe<sub>2</sub> grown on graphite by molecular-beam epitaxy. Element-specific X-ray magnetic circular dichroism, complemented with magnetic susceptibility measurements, further reveals monolayer VSe<sub>2</sub> 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.