论文标题
调和单层和双层$ j _ {\ rm eff} = 1/2 $ hybrid氧化物超级晶格
Reconciling monolayer and bilayer $J_{\rm eff} = 1/2$ square lattices in hybrid oxide superlattice
论文作者
论文摘要
在二维结构中限制的原子层的数量对于电子和磁性特性至关重要。单层和双层$ j _ {\ rm eff} = 1/2 $方格是众所周知的示例,其中额外的层的存在将xy-anisotropy旋转到$ c $轴各向异性。我们报告了混合sriro $ _3 $/srtio $ _3 $ superlattice的实验实现,该级别将单层和双层方形晶格集成在一个分层结构中。通过同步加速器X射线衍射,谐振X射线磁散射,磁化强度和电阻率测量值,我们发现杂交超级晶格表现出与单层和双层系统不同的特性,并且无法通过简单的添加来解释它们。特别是,整个混合峰值通过在类似于双层系统的温度下通过单个反铁磁过渡同时订购,但所有$ j _ {\ rm eff} = 1/2 $矩矩,主要指向与单层系统相似的$ ab $ - 平面。结果表明,将单层和双层带有正交特性,在混合超晶格结构中彼此接近,是稳定在均匀结构中无法获得的独特状态的有力方法。
The number of atomic layers confined in a two-dimensional structure is crucial for the electronic and magnetic properties. Single-layer and bilayer $J_{\rm eff} = 1/2$ square lattices are well-known examples where the presence of the extra layer turns the XY-anisotropy to the $c$-axis anisotropy. We report on experimental realization of a hybrid SrIrO$_3$/SrTiO$_3$ superlattice that integrates monolayer and bilayer square lattices in one layered structure. By synchrotron x-ray diffraction, resonant x-ray magnetic scattering, magnetization, and resistivity measurements, we found that the hybrid superlattice exhibits properties that are distinct from both the single-layer and bilayer systems and cannot be explained by a simple addition of them. In particular, the entire hybrid superlattice orders simultaneously through a single antiferromagnetic transition at temperatures similar to the bilayer system but with all the $J_{\rm eff} = 1/2$ moments mainly pointing in the $ab$-plane similar to the single-layer system. The results show that bringing monolayer and bilayer with orthogonal properties in proximity to each other in a hybrid superlattice structure is a powerful way to stabilize a unique state not obtainable in a uniform structure.