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在超高质量范德华体磁体CrSBr中揭示的三阶段磁相变

A Three-Stage Magnetic Phase Transition Revealed in Ultrahigh-Quality van der Waals Bulk Magnet CrSBr.

作者信息

Liu Wenhao, Guo Xiaoyu, Schwartz Jonathan, Xie Hongchao, Dhale Nikhil Uday, Sung Suk Hyun, Kondusamy Aswin Lakshmi Narayanan, Wang Xiqu, Zhao Haonan, Berman Diana, Hovden Robert, Zhao Liuyan, Lv Bing

机构信息

Department of Physics, The University of Texas at Dallas, Richardson, Texas 75080, United States.

Department of Physics, University of Michigan, Ann Arbor, Michigan 48109, United States.

出版信息

ACS Nano. 2022 Oct 25;16(10):15917-15926. doi: 10.1021/acsnano.2c02896. Epub 2022 Sep 23.

Abstract

van der Waals (vdW) magnets are receiving ever-growing attention nowadays due to their significance in both fundamental research 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 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 scales from submm 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 185, 156, and 132 K, 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.

摘要

范德华(vdW)磁体如今正受到越来越多的关注,这是因为它们在低维磁性的基础研究以及自旋电子器件的潜在应用中都具有重要意义。范德华磁体的高晶体质量是维持其固有磁性和电子特性的关键,尤其是当剥离到二维极限时。在此,我们使用直接固-气合成法合成了超高质量的空气稳定范德华CrSBr晶体。通过X射线衍射、二次谐波产生和扫描透射电子显微镜,在从亚毫米到原子分辨率的长度尺度上充分证明了其高单晶性和空间均匀性。更重要的是,超高质量CrSBr晶体的比热测量在185、156和132 K处显示出三个热力学异常,揭示了冷却时磁有序的逐步发展,这也得到了磁化和输运结果的证实。我们的超高质量CrSBr可以很容易地进一步剥离成单层和双层,为自旋电子和磁光电子应用提供异质结构的构建块。

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