Department of Physics, Columbia University, New York, New York 10027, USA.
Phys Rev Lett. 2013 May 3;110(18):186402. doi: 10.1103/PhysRevLett.110.186402. Epub 2013 May 1.
We describe a general materials design approach that produces large orbital energy splittings (orbital polarization) in nickelate heterostructures, creating a two-dimensional single-band electronic surface at the Fermi energy. The resulting electronic structure mimics that of the high temperature cuprate superconductors. The two key ingredients are (i) the construction of atomic-scale distortions about the Ni site via charge transfer and internal electric fields, and (ii) the use of three-component (tricomponent) superlattices to break inversion symmetry. We use ab initio calculations to implement the approach, with experimental verification of the critical structural motif that enables the design to succeed.
我们描述了一种通用的材料设计方法,该方法可在镍酸盐异质结构中产生较大的轨道能分裂(轨道极化),从而在费米能处产生二维单能带电子表面。所得的电子结构模拟了高温铜酸盐超导体的电子结构。两个关键要素是:(i)通过电荷转移和内电场在 Ni 位构建原子尺度的变形;(ii)使用三组分(三元)超晶格破坏反转对称性。我们使用第一性原理计算来实现该方法,并通过实验验证了实现设计所需的关键结构基元。