论文标题
驼峰异常在大厅阻力循环srruo $ _3 $/sriro $ _3 $多层人士
Origin of the hump anomalies in the Hall resistance loops of ultrathin SrRuO$_3$/SrIrO$_3$ multilayers
论文作者
论文摘要
非常小的NéelSkyrmions可以在Srruo $ _3 $/sriro $ _3 $外延双层中形成的提议,并且可以使用电场效应来操纵这些天际电源,从而强烈刺激了Srruo $ _3 $杂种构造的最新研究。强大的界面dzyaloshinskii-moriya互动,再加上倒置对称性的破坏,被认为是在srruo $ _3 $/sriro $ _3 $ bilayers中形成天际的动力。在这里,我们调查了名义上对称的异质结构,其中超薄铁磁srruo $ _3 $层夹在大型旋转摩托耦合sriro $ _3 $层之间,对于这种情况不利于出现网络介绍性杂质dzyaloshinskii-Moriskiy-moriyyy互动。以前,从异常的大厅阻力中推断出非对称的srruo $ _3 $ _3 $/sriro $ _3 $ biLayers中的天空露骨的形成。对称sriro $ _3 $/srruo $ _3 $/sriro $ _3 $ TriLayers不会在大厅循环中显示驼峰异常。然而,对称多层的异常大厅电阻环(在其中堆叠了几次)确实表现出Humplike结构,类似于不对称的srruo $ _3 $ _3 $/sriro $ _3 $ _3 $ bilayers。霍尔效应环路异常的起源可能存在于单个srruo $ _3 $层的电子和磁性上的不可避免的差异,而不是在天空的形成中。
The proposal that very small Néel skyrmions can form in SrRuO$_3$/SrIrO$_3$ epitaxial bilayers and that the electric field-effect can be used to manipulate these skyrmions in gated devices strongly stimulated the recent research of SrRuO$_3$ heterostructures. A strong interfacial Dzyaloshinskii-Moriya interaction, combined with the breaking of inversion symmetry, was considered as the driving force for the formation of skyrmions in SrRuO$_3$/SrIrO$_3$ bilayers. Here, we investigated nominally symmetric heterostructures in which an ultrathin ferromagnetic SrRuO$_3$ layer is sandwiched between large spin-orbit coupling SrIrO$_3$ layers, for which the conditions are not favorable for the emergence of a net interfacial Dzyaloshinskii-Moriya interaction. Previously the formation of skyrmions in the asymmetric SrRuO$_3$/SrIrO$_3$ bilayers was inferred from anomalous Hall resistance loops showing humplike features that resembled topological Hall effect contributions. Symmetric SrIrO$_3$/SrRuO$_3$/SrIrO$_3$ trilayers do not show hump anomalies in the Hall loops. However, the anomalous Hall resistance loops of symmetric multilayers, in which the trilayer is stacked several times, do exhibit the humplike structures, similar to the asymmetric SrRuO$_3$/SrIrO$_3$ bilayers. The origin of the Hall effect loop anomalies likely resides in unavoidable differences in the electronic and magnetic properties of the individual SrRuO$_3$ layers rather than in the formation of skyrmions.