论文标题

手性和RASHBA相关的效果在2D Centro对称的Ferromagnet的自旋纹理中:CRI3双层的情况

Chirality and Rashba-related effects in the spin texture of a 2D centro-symmetric ferromagnet: the case of CrI3 bilayer

论文作者

Ghosh, Sukanya, Stojic, Natasa, Binggeli, Nadia

论文摘要

新发现的二维磁性半导体(例如CRI $ _3 $)引发了引起的兴趣激增,这是由于其异国情调的旋转依赖性特性以及在旋转型和磁性磁通学中的潜在应用。使用第一原质密度功能理论计算,我们研究了cri $ _3 $的原型2D中心对称性铁磁(FM)双层双层中的动量空间中自旋偏振纹理的性质,具有垂直磁化。 FM双层在其最高价带中显示丰富的面内旋转纹理。我们显示了两个不同的自旋倾斜效应,这是由于FM顺序与结构性手性和电化极化的耦合所致,在建立平面内自旋纹理时。第一个效果是由层堆叠的手性和价值状态的自旋轨道偏振性产生的,并在两层上都产生相同的倾斜。第二个效果是与RASHBA相关的效应,在中心对称的铁磁体中,在单个电子状态下诱导了两层的两个相反的自旋compenters。此外,以FM双层为例,我们提供了由磁性空间组对称对称性对自旋极化向量施加的一般规则,它是磁性晶体的Brillouin区域中自旋纹理形状的指南。最后,我们表明上述效果可有效地通过压缩应变来操纵自旋纹理,这会在FM BiLayer Valence-Band-Edge带有倾斜的旋转状态下诱导。

The newly discovered two-dimensional magnetic semiconductors such as CrI$_3$ have triggered a surge of interest stemming from their exotic spin-dependent properties and potential applications in spintronics and magneto-optoelectronics. Using first-principle density-functional-theory calculations, we investigate the properties of the spin-polarization texture in momentum space in the prototype 2D centrosymmetric ferromagnetic (FM) bilayer of CrI$_3$, with perpendicular magnetization. The FM bilayer displays a rich in-plane spin texture in its highest valence bands. We show the existence of two distinct spin canting effects, which result from the coupling of FM order with structural chirality and electric polarization, in establishing the in-plane spin texture. The first effect is generated by the chirality of the layer stacking and the spin-orbit-polarized nature of the valence states, and yields the same canting on both layers. The second effect is a Rashba-related effect, which in a centrosymmetric ferromagnet induces in a single electronic state two opposite spin-canted components on the two layers. Furthermore, using the FM bilayer as an example, we provide general rules imposed by magnetic-space-group symmetries on spin-polarization vectors, serving as guidelines for the shape of the spin texture in the Brillouin zone of magnetic crystals. Finally, we show that the above effects can be effectively used to manipulate the spin texture via compressive strain, which induces in the FM bilayer valence-band-edge states with canted spins.

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