论文标题

Janus半导体CR $ _2 $ ASP单层的有趣的铁磁学预测

Prediction of interesting ferromagnetism in Janus semiconducting Cr$_2$AsP monolayer

论文作者

Ma, Qiuyue, Li, Yingmei, Yang, Guochun, Liu, Yong

论文摘要

二维(2D)半金属材料对高级旋转应用引起了激烈的兴趣,对于开发的下一代纳米纺丝设备至关重要。在这里,我们采用了一种第一原理计算方法来预测固有,SE掺杂和双轴应变调整CR $ _2 $ ASP单层的磁性。 Janus cr $ _2 $ ASP单层被证明是固有的铁磁(FM)半导体,在PBE+U级别在pBE+u级别进行了交换拆分带gap为0.15 eV。浓度依赖于cr $ _2 $的浓度为$ _ {1-x} $ se $ _x $ p(x = 0.25,0.50,0.75)可以​​调节从FM半导体到FM Half-Metallicity的Cr $ _2 $ asp。具体而言,旋转通道越过费米水平,而旋转通道具有带隙。更有趣的是,宽的半金属带镜和自旋带盖使它们对旋转设备的制备具有重要意义。最后,我们还探讨了双轴菌株从-14%到10%对Cr $ _2 $ ASP单层磁性的影响。从FM到抗铁磁(AFM)以-10.7%的压缩应力出现过渡,源自间接FM FM Uperexchange相互作用与最近邻居CR原子之间的直接AFM相互作用之间的竞争。此外,当压缩应变升至-2%或拉伸应变为6%时,半导体Cr $ _2 $ asp成为半金属材料。这些迷人的属性使Janus Cr $ _2 $ ASP单层具有很大的潜力用于Spintronic设备的应用。

Two-dimensional (2D) half-metallic materials that have sparked intense interest in advanced spintronic applications are essential to the developing next-generation nanospintronic devices. Here we have adopted a first-principles calculation method to predict the magnetic properties of intrinsic, Se-doped, and biaxial strain tuning Cr$_2$AsP monolayer. The Janus Cr$_2$AsP monolayer is proved to be an intrinsic ferromagnetic (FM) semiconductor with a exchange splitting bandgap of 0.15 eV at the PBE+U level. Concentration-dependent Se doping such as Cr$_2$As$_{1-x}$Se$_x$P (x = 0.25, 0.50, 0.75) can regulate Cr$_2$AsP from FM semiconductor to FM half-metallicity. Specifically, the spin-up channel crosses the Fermi level, while the spin-down channel has a bandgap. More interestingly, the wide half-metallic bandgaps and spin bandgaps make them have important implications for the preparation of spintronic devices. At last, we also explore the effect of biaxial strain from -14% to 10% on the magnetism of the Cr$_2$AsP monolayer. There appears a transition from FM to antiferromagnetic (AFM) at a compressive strain of -10.7%, originating from the competition between the indirect FM superexchange interaction and the direct AFM interaction between the nearest-neighbor Cr atoms. Additionally, when the compressive strain to -2% or the tensile strain to 6%, the semiconducting Cr$_2$AsP becomes a half-metallic material. These charming properties render the Janus Cr$_2$AsP monolayer with great potential for applications in spintronic devices.

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