论文标题
收费传输引起的界面铁磁剂在la $ _ {0.7} $ sr $ _ {0.3} $ mno $ _3 $/ndnio $ _3 $
Charge transfer induced interfacial ferromagnetism in La$_{0.7}$Sr$_{0.3}$MnO$_3$/NdNiO$_3$
论文作者
论文摘要
电荷转移引起的界面界面铁磁及其对LA $ _ {0.7} $ _ {0.7} $ sr $ _ {0.3} $ mno $ _3 $ _3 $/ndnio $ _3 $相关的氧化物异质结构的影响,由软X射线吸收和X射线循环范围从3 $ _3 $ _3 $ _3 $ _3 $ _3 $ _3 $ _3 $ _3 $ _3 $ _3 $ _3 $ _3 $ _3 $ _3 $ _3 $ _3 $抗fiferromagnetic ni $ _3^+$ cations自然是ndnio $ _3 $ layer的一部分,ni $ _2^+$ ions是由于涉及邻近层的MN元素的接口形成的。由于与Mn $ _4^+$ ions在la $ _ {0.7} $ _ {0.7} $ sr $ _ {0.3} $ mno $ _3 $ layer中的交换耦合,它们表现出铁磁行为。这可以看作是对单向各向异性的强度有害的,因为界面的很大一部分不会导致铁磁层的固定。通过分析Ni L $ _ {2,3} $边缘处X射线吸收的线形变化,NDNIO $ _3 $ layer的金属 - 绝缘体过渡以特定方式解决。该相变的启动约为120 K,高于ndnio $ _3 $层的抗铁磁转变,该层被测量为50K。交换偏置和增强的强制场在字段通过NDNIO $ _3 $ lay的Neel温度冷却样品后,将样品冷却样品。 Different from La$_{0.7}$Sr$_{0.3}$MnO$_3$/LaNiO$_3$, the exchange bias observed in La$_{0.7}$Sr$_{0.3}$MnO$_3$/NdNiO$_3$ is due to the antiferromagnetism of NdNiO$_3$ and the frustration at the 界面。这些结果表明,减少界面轨道杂交可以用作可调参数,以表现出表现出电荷转移机制的全氧化物异质结构中交换偏置效应的强度。
Charge transfer induced interfacial ferromagnetism and its impact on the exchange bias effect in La$_{0.7}$Sr$_{0.3}$MnO$_3$/NdNiO$_3$ correlated oxide heterostructures were investigated by soft x-ray absorption and x-ray magnetic circular dichroism spectra in a temperature range from 10 to 300 K. Besides the antiferromagnetic Ni$_3^+$ cations which are naturally part of the NdNiO$_3$ layer, Ni$_2^+$ ions are formed at the interface due to a charge transfer mechanism involving the Mn element of the adjacent layer. They exhibit a ferromagnetic behavior due to the exchange coupling to the Mn$_4^+$ ions in the La$_{0.7}$Sr$_{0.3}$MnO$_3$ layer. This can be seen as detrimental to the strength of the unidirectional anisotropy since a significant part of the interface does not contribute to the pinning of the ferromagnetic layer. By analyzing the line shape changes of the x-ray absorption at the Ni L$_{2,3}$ edges, the metal-insulator transition of the NdNiO$_3$ layer is resolved in an element specific manner. This phase transition is initiated at about 120 K, way above the paramagnetic to antiferromagnetic transition of NdNiO$_3$ layer which measured to be 50 K. Exchange bias and enhanced coercive fields were observed after field cooling the sample through the Neel temperature of the NdNiO$_3$ layer. Different from La$_{0.7}$Sr$_{0.3}$MnO$_3$/LaNiO$_3$, the exchange bias observed in La$_{0.7}$Sr$_{0.3}$MnO$_3$/NdNiO$_3$ is due to the antiferromagnetism of NdNiO$_3$ and the frustration at the interface. These results suggest that reducing the interfacial orbital hybridization may be used as a tunable parameter for the strength of the exchange bias effect in all-oxide heterostructures which exhibit a charge transfer mechanism.