论文标题
直接观察强大的大厅效应和近端引起的SRIRO3中的铁磁状态
Direct observation of strong anomalous Hall effect and proximity-induced ferromagnetic state in SrIrO3
论文作者
论文摘要
基于5D虹膜的过渡金属氧化物由于其强大的自旋轨道耦合而有利于新的或外来的量子电子状态,因此获得了广泛的兴趣。另一方面,由于通常弱电子电子相关强度,它们很少表现出更多的主流秩序,例如铁磁性。在这里,我们在SRIRO3(SIO)异质结构中通过界面电荷转移在SRIRO3(SIO)异质结构中通过使用铁磁性绝缘子与SIO接触的SRIRO3(SIO)异质转移显示了近端诱导的铁电磁(FM)状态。电运传输允许选择性探测SIO层的FM状态,并直接观察强,内在和正异。大厅效应(AHE)。对于T <20 K,AHE显示出异常大的强制性和饱和场,这是强烈的伪固定耦合的指纹。据报道,霍尔角,sxyahe/sxx,比典型的3D金属和大约0.1 mb/ir的FM净力矩大的数量级大。这强调了如何通过结构修改和与3D TMO的交换相互作用来操纵SIO的非平凡拓扑带的性能。
The 5d iridium-based transition metal oxides have gained broad interest because of their strong spin-orbit coupling which favors new or exotic quantum electronic states. On the other hand, they rarely exhibit more mainstream orders like ferromagnetism due to generally weak electron-electron correlation strength. Here, we show a proximity-induced ferromagnetic (FM) state with TC = 100 K and strong magnetocrystalline anisotropy in a SrIrO3 (SIO) heterostructure via interfacial charge transfer by using a ferromagnetic insulator in contact with SIO. Electrical transport allows to selectively probe the FM state of the SIO layer and the direct observation of a strong, intrinsic and positive anomalous Hall effect (AHE). For T < 20 K, the AHE displays unusually large coercive and saturation field, a fingerprint of a strong pseudospin-lattice coupling. A Hall angle, sxyAHE/sxx, larger by an order of magnitude than in typical 3d metals and a FM net moment of about 0.1 mB/Ir, is reported. This emphasizes how efficiently the nontrivial topological band properties of SIO can be manipulated by structural modifications and the exchange interaction with 3d TMOs.