van Thiel Thierry C, Fowlie Jennifer, Autieri Carmine, Manca Nicola, Šiškins Makars, Afanasiev Dmytro, Gariglio Stefano, Caviglia Andrea D
Kavli Institute of Nanoscience, Delft University of Technology, Lorentzweg 1, 2628 CJ Delft, Netherlands.
Department of Quantum Matter Physics, University of Geneva, 24 Quai Ernest-Ansermet, 1211 Genève 4, Switzerland.
ACS Mater Lett. 2020 Apr 6;2(4):389-394. doi: 10.1021/acsmaterialslett.9b00540. Epub 2020 Mar 9.
Oxide heterointerfaces constitute a rich platform for realizing novel functionalities in condensed matter. A key aspect is the strong link between structural and electronic properties, which can be modified by interfacing materials with distinct lattice symmetries. Here, we determine the effect of the cubic-tetragonal distortion of SrTiO on the electronic properties of thin films of SrIrO, a topological crystalline metal hosting a delicate interplay between spin-orbit coupling and electronic correlations. We demonstrate that below the transition temperature at 105 K, SrIrO orthorhombic domains couple directly to tetragonal domains in SrTiO. This forces the in-phase rotational axis to lie in-plane and creates a binary domain structure in the SrIrO film. The close proximity to the metal-insulator transition in ultrathin SrIrO causes the individual domains to have strongly anisotropic transport properties, driven by a reduction of bandwidth along the in-phase axis. The strong structure-property relationships in perovskites make these compounds particularly suitable for static and dynamic coupling at interfaces, providing a promising route towards realizing novel functionalities in oxide heterostructures.
氧化物异质界面为在凝聚态物质中实现新功能提供了一个丰富的平台。一个关键方面是结构与电子性质之间的紧密联系,这种联系可以通过将具有不同晶格对称性的材料进行界面连接来改变。在此,我们确定了SrTiO的立方 - 四方畸变对SrIrO薄膜电子性质的影响,SrIrO是一种拓扑晶态金属,其自旋轨道耦合与电子关联之间存在微妙的相互作用。我们证明,在105K的转变温度以下,SrIrO的正交晶畴直接与SrTiO中的四方晶畴耦合。这使得同相旋转轴位于平面内,并在SrIrO薄膜中形成二元畴结构。超薄SrIrO中接近金属 - 绝缘体转变导致各个畴具有强烈的各向异性输运性质,这是由沿同相轴带宽的减小所驱动的。钙钛矿中强大的结构 - 性质关系使得这些化合物特别适合于界面处的静态和动态耦合,为在氧化物异质结构中实现新功能提供了一条有前景的途径。