论文标题

田线线性的异常大厅效应和浆果曲率是由kagome抗fiferromagnet MN3SN引起的

Field-linear anomalous Hall effect and Berry curvature induced by spin chirality in the kagome antiferromagnet Mn3Sn

论文作者

Li, Xiaokang, Koo, Jahyun, Zhu, Zengwei, Behnia, Kamran, Yan, Binghai

论文摘要

在过去的二十年中,已经确定一个非平凡的电子波功能拓扑会产生异常的大厅效应(AHE),该效应表明自己是磁场中非线性的霍尔电导率。在这里,我们报告了一个前所未有的现场线性AHE案例。在Mn $ _3 $ sn中,kagome磁铁磁铁的范围内的响应显示出突然的跳跃,被发现是AHE的案例。现在,我们发现,在磁场中完全线性的平面内响应是由波函数的浆果曲率设置的。大厅响应及其随之而来的Nernst信号的幅度超过了半经典图片中的预期。我们认为磁场会诱导平面外旋转倾斜,然后引起Kagome晶格上的非平凡旋转手性。在频带结构中,我们发现自旋手性通过以前未知的Weyl节点线来修饰拓扑,这是对AHE观察到的。我们的工作揭示了从旋转手性和动量空间浆果曲率中对真实空间浆果相的有趣统一。

During the past two decades, it has been established that a non-trivial electron wave-function topology generates an anomalous Hall effect (AHE), which shows itself as a Hall conductivity non-linear in magnetic field. Here, we report on an unprecedented case of field-linear AHE. In Mn$_3$Sn, a kagome magnet, the out-of-plane Hall response, which shows an abrupt jump, was discovered to be a case of AHE. We find now that the in-plane Hall response, which is perfectly linear in magnetic field, is set by the Berry curvature of the wavefunction. The amplitude of the Hall response and its concomitant Nernst signal exceed by far what is expected in the semiclassical picture. We argue that magnetic field induces out-of-plane spin canting and thereafter gives rise to nontrivial spin chirality on the kagome lattice. In band structure, we find that the spin chirality modifies the topology by gapping out Weyl nodal lines unknown before, accounting for the AHE observed. Our work reveals intriguing unification of real-space Berry phase from spin chirality and momentum-space Berry curvature.

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