A three-stage magnetic phase transition revealed in ultrahigh-quality van der Waals bulk magnet CrSBr
POSTER
Abstract
van der Waals (vdW) magnets are receiving ever-growing attention nowadays due to their significance in both fundamental researches on low-dimensional magnetism and potential applications in spintronic devices. The high crystalline quality of vdW magnets is the key to maintaining intrinsic magnetic and electronic properties, especially when exfoliated down to the two-dimensional (2D) limit. Here, ultrahigh-quality air-stable vdW CrSBr crystals are synthesized using the direct solid-vapor synthesis method. The high single crystallinity and spatial homogeneity have been thoroughly evidenced at length scale from sub-mm to atomic resolution by X-ray diffraction, second harmonic generation, and scanning transmission electron microscopy. More importantly, specific heat measurements of ultrahigh-quality CrSBr crystals show three thermodynamic anomalies at 185K, 156K, and 132K, revealing a stage-by-stage development of the magnetic order upon cooling, which is also corroborated with the magnetization and transport results. Our ultrahigh-quality CrSBr can further be exfoliated down to monolayers and bilayers easily, providing the building blocks of heterostructures for spintronic and magneto-optoelectronic applications.
Publication: Liu, Wenhao, et al. "A Three-Stage Magnetic Phase Transition Revealed in Ultrahigh-Quality van der Waals Bulk Magnet CrSBr." ACS nano (2022). doi.org/10.1021/acsnano.2c02896
Presenters
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Wenhao Liu
University of Texas at Dallas
Authors
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Wenhao Liu
University of Texas at Dallas
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Xiaoyu Guo
University of Michigan
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Jonathan Schwartz
University of Michigan
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Robert Hovden
University of Michigan
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Liuyan Zhao
University of Michigan
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Bing Lv
University of Texas at Dallas