论文标题

稳定的二维Ferrovalley yx $ _2 $(x = i,br和cl)中的大型内部山谷极化和高居里温度

Large Intrinsic Valley Polarization and High Curie Temperature in Stable Two-dimensional Ferrovalley YX$_2$(X=I,Br and Cl)

论文作者

Liu, Wen-Yu, Huang, Bo, Wu, Xu-Cai, Li, Shu-Zong, Li, Hongxing, Yang, Zhixiong, Zhang, Wei-Bing

论文摘要

带有自发谷极化的Ferrovalley材料对于谷化的应用至关重要。根据第一原理的计算,我们证明了2H结构中的二维(2D)YX $ _2 $(X = I,Br和Cl)构成了一系列有希望的Ferrovalley半导体,具有较大的自发谷化偏振和较高的库里温度。我们的计算表明,YX $ _2 $是动态和热稳定的2D铁磁半导体,居里温度高于200 k。由于天然的非中性非对称结构,内在的铁磁秩和强旋旋旋流旋风耦合,大型自发性瓦利极化是108.98,57.98,57.70和22.35.55.35.55.55.55.35.55.55.35.55.55.35.35.35.35.35.35.35.35.35.35.35.55 sev。 yx $ _2 $(x = i,br和cl)。还基于山谷对比的浆果曲率提出了异常的山谷大厅效应。此外,发现铁磁性和山谷极化是通过施加双轴菌株有效调节的。有趣的是,可以通过应用适度的压缩应变来打开YBR $ _2 $和YCL $ _2 $的被抑制的山谷物理。目前的发现承诺,YX $ _2 $作为进一步的实验研究和Valleytronics实践应用的竞争候选者。

Ferrovalley materials with spontaneous valley polarization are crucial to valleytronic application. Based on first-principles calculations, we demonstrate that two-dimensional (2D) YX$_2$(X= I, Br,and Cl) in 2H structure constitute a series of promising ferrovalley semiconductors with large spontaneous valley polarization and high Curie temperature. Our calculations reveal that YX$_2$ are dynamically and thermally stable 2D ferromagnetic semiconductors with a Curie temperature above 200 K. Due to the natural noncentrosymmetric structure, intrinsic ferromagnetic order and strong spin orbital coupling, the large spontaneous valley polarizations of 108.98, 57.70 and 22.35 meV are also predicted in single-layer YX$_2$(X = I, Br and Cl),respectively. The anomalous valley Hall effect is also proposed based on the valley contrasting Berry curvature. Moreover, the ferromagnetism and valley polarization are found to be effectively tuning by applying a biaxial strain. Interestingly, the suppressed valley physics of YBr$_2$ and YCl$_2$ can be switched on via applying a moderate compression strain. The present findings promise YX$_2$ as competitive candidates for the further experimental studies and practical applications in valleytronics.

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