具有大磁交换相互作用和高 T C 的二维 Cr2Cl3S3 Janus 磁性半导体

Lei Fu, a, Shasha Li, Xiangyan Bo, Sai Ma, Feng Li, Yong Pu
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摘要

二维杰纳斯单层因其增强的磁耦合和居里温度而在自旋电子器件应用中大有可为。实验证明,范德华CrCl3单层具有面内磁易轴和17 K的低居里温度,这将限制其在自旋电子器件中的应用。在这项工作中,我们根据第一性原理计算提出了一种新的杰纳斯单层 Cr2Cl3S3。声子色散和弹性常数证实了 Janus 单层 Cr2Cl3S3 具有动态和机械稳定性。基于磁交换常数的蒙特卡罗模拟结果表明,Janus单层Cr2Cl3S3是一种本征铁磁性半导体,其TC值为180 K,远高于CrCl3的TC值,这是由于S取代引起的铁磁耦合增强所致。此外,Janus Cr2Cl3S3 的磁易轴可以调谐到垂直方向,磁各向异性能(MAE)高达 142 μeV/Cr。此外,还评估了双轴应变对 Janus 单层 Cr2Cl3S3 磁性能的影响。结果发现,在拉伸应变下居里温度更稳定。这项研究表明,Janus 单层 Cr2Cl3S3 的居里温度和面外磁易轴都有所提高,这表明它在二维自旋电子器件中具有更大的应用潜力。
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Two-dimensional Cr2Cl3S3 Janus Magnetic Semiconductor with large magnetic exchange interaction and high-T C
2D Janus monolayers are promising in spintronic device application due to their enhanced magnetic couplings and Curie temperatures. Van der Waals CrCl3 monolayer has been experimentally proved to have an in-plane magnetic easy axis and a low Curie temperature of 17 K, which will limit its application in spintronic devices. In this work, we propose a new Janus monolayer Cr2Cl3S3 based on the first principles calculations. The phonon dispersion and elastic constants confirm that Janus monolayer Cr2Cl3S3 is dynamically and mechanically stable. Our Monte Carlo simulation results based on magnetic exchange constants reveal that Janus monolayer Cr2Cl3S3 is an intrinsic ferromagnetic semiconductor with TC of 180 K, which is much higher than that of CrCl3 due to the enhanced ferromagnetic coupling caused by S substitution. Moreover, the magnetic easy axis of Janus Cr2Cl3S3 can be tuned to the perpendicular direction with a large magnetic anisotropy energy (MAE) of 142 μeV/Cr. Furthermore, the effect of biaxial strain on the magnetic property of Janus monolayer Cr2Cl3S3 is evaluated. It is found that the Curie temperature is more robust under tensile strain. This work indicates that the Janus monolayer Cr2Cl3S3 presents increased Curie temperature and out-of-plane magnetic easy axis, suggesting greater application potential in 2D spintronic devices.
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