论文标题

$κ$ -Type有机反铁磁铁的异常大厅效应

Anomalous Hall effect in $κ$-type organic antiferromagnets

论文作者

Naka, Makoto, Hayami, Satoru, Kusunose, Hiroaki, Yanagi, Yuki, Motome, Yukitoshi, Seo, Hitoshi

论文摘要

从理论上讲,我们提出了一种在$κ$ -Type有机导体的抗磁磁性(AFM)状态中的异常霍尔效应(AHE)的机制。我们将自旋 - 轨道耦合纳入有效的哈伯德模型中,这些耦合在$κ$ -Type晶格结构上考虑了分子的方向及其与二聚化的排列。通过Hartree-fock近似和线性响应理论处理该模型,我们发现对霍尔电导率的固有贡献在电子掺杂的AFM金属相中变为非零,具有小的倾斜铁磁矩。我们表明,与传统的智慧相反,旋转的倾斜与大厅的反应无关。非零霍尔电导率起源于在旋转轨道耦合的情况下,源自AFM阶的共线分量。这些特征在各向异性三角形晶格上的强二聚化限制的分析中得到很好的解释。此外,我们通过考虑出现磁通量的真实空间配置来展示当前AHE的直观图片。我们还发现,即使是在非零频率的未蛋白aFM绝缘阶段中,霍尔的响应也出现在非零频率上,作为磁光kerr效应,在电荷传递激发周围也会增强。我们讨论基于ET的化合物中AHE的可能检测。

We theoretically propose a mechanism for the anomalous Hall effect (AHE) in an antiferrromagnetic (AFM) state of $κ$-type organic conductors. We incorporate the spin-orbit coupling in the effective Hubbard model on the $κ$-type lattice structure taking into account the orientation of the molecules and their arrangement with dimerization. Treating this model by means of the Hartree-Fock approximation and the linear response theory, we find that an intrinsic contribution to the Hall conductivity becomes nonzero in the electron-doped AFM metallic phase with a small canted ferromagnetic moment. We show that, contrary to the conventional wisdom, the spin canting is irrelevant to the Hall response; the nonzero Hall conductivity originates from the collinear component of the AFM order in the presence of the spin-orbit coupling. These features are well explained analytically in the limit of strong dimerization on the anisotropic triangular lattice. Furthermore, we present an intuitive picture for the present AHE by considering the real-space configuration of emergent magnetic fluxes. We also find that the Hall response appears even in the undoped AFM insulating phase at nonzero frequency as the magneto-optical Kerr effect, which is enhanced around the charge transfer excitations. We discuss possible detections of the AHE in ET based compounds.

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