论文标题
具有广义的半经典理论的三阶内在异常效应
Third-order intrinsic anomalous Hall effect with generalized semiclassical theory
论文作者
论文摘要
线性固有的异常霍尔效应(IAHE)和二阶Iahe已在时间反转破裂的系统中进行了深入研究。然而,作为非线性霍尔家族的重要成员之一,由于缺乏适当的理论方法,对三阶IAHE的研究仍然没有,尽管已经在一阶半经典理论的框架内研究了三阶外部AHE。本文中,我们将Bloch电子在均匀电场下的半经典理论推广到使用Wavepacket方法,直至三阶方法,并基于我们预测三阶IAHE也可以在时间倒转的破碎系统中发生。与二阶Iahe相同,我们发现带状几何量,二阶依赖于场的浆果曲率是由二阶场诱导的位置移位引起的,它起着关键的作用来观察这种效果。此外,通过对称分析,我们发现三阶Iahe作为领先的贡献,得到15个时间反转的损坏的3D磁点基(MPG)的支持,与一类宽类的抗铁磁(AFM)材料相对应。在对称论点的指导下,选择了一个两波段模型来证明广义理论。此外,广义的三阶半经典理论仅取决于Bloch带的性质,这意味着它也可以通过与第一原理计算结合使用,也可以使用它来探索IAHE。
The linear intrinsic anomalous Hall effect (IAHE) and second-order IAHE have been intensively investigated in time-reversal broken systems. However, as one of the important members of the nonlinear Hall family, the investigation of third-order IAHE remains absent due to the lack of an appropriate theoretical approach, although the third-order extrinsic AHE has been studied within the framework of first- and second-order semiclassical theory. Herein, we generalize the semiclassical theory for Bloch electrons under the uniform electric field up to the third-order using wavepacket method and based on which we predict that the third-order IAHE can also occur in time-reversal broken systems. Same as the second-order IAHE, we find the band geometric quantity, the second-order field-dependent Berry curvature arising from the second-order field-induced positional shift, plays a pivotal role to observe this effect. Moreover, with symmetry analysis, we find that the third-order IAHE, as the leading contribution, is supported by 15 time-reversal broken 3D magnetic point groups (MPGs), corresponding to a wide class of antiferromagnetic (AFM) materials. Guided by the symmetry arguments, a two-band model is chosen to demonstrate the generalized theory. Furthermore, the generalized third-order semiclassical theory depends only on the properties of Bloch bands, implying that it can also be employed to explore the IAHE in realistic AFM materials, by combining with first-principles calculations.