论文标题
观察共线抗fiferromagnet中的异常大厅效应
Observation of the Anomalous Hall Effect in a Collinear Antiferromagnet
论文作者
论文摘要
时间反转对称性破坏是基于许多磁性拓扑现象的基本物理概念,例如异常霍尔效应(AHE)及其量化变体。 AHE主要伴随着铁磁偶极矩,这阻碍了拓扑量子状态,并限制了记忆设备中的数据密度,或者限制了具有较强的自旋谐波的微妙非结合磁性阶,都限制了它们的适用性。潜在的突破是在各向异性晶体环境中共线性抗铁磁性产生的AHE的最新理论预测。这种新机制不需要磁性偶极或非连线场。但是,迄今为止尚未在实验中观察到。在这里,我们通过测量金红石collinear抗Fiferromagnet ruo $ _2 $中的表层中的AHE来证明这种非常规机制。观察到的异常霍尔电导率较大,超过300 s/cm,并且与浆果相拓扑的贡献一致。我们的结果在丰富的共线抗磁磁材料类别中开辟了一个新的未开发的章节章节中的破坏现象。
Time-reversal symmetry breaking is the basic physics concept underpinning many magnetic topological phenomena such as the anomalous Hall effect (AHE) and its quantized variant. The AHE has been primarily accompanied by a ferromagnetic dipole moment, which hinders the topological quantum states and limits data density in memory devices, or by a delicate noncollinear magnetic order with strong spin decoherence, both limiting their applicability. A potential breakthrough is the recent theoretical prediction of the AHE arising from collinear antiferromagnetism in an anisotropic crystal environment. This new mechanism does not require magnetic dipolar or noncollinear fields. However, it has not been experimentally observed to date. Here we demonstrate this unconventional mechanism by measuring the AHE in an epilayer of a rutile collinear antiferromagnet RuO$_2$. The observed anomalous Hall conductivity is large, exceeding 300 S/cm, and is in agreement with the Berry phase topological transport contribution. Our results open a new unexplored chapter of time-reversal symmetry breaking phenomena in the abundant class of collinear antiferromagnetic materials.