异质结
原子轨道
对称性破坏
点反射
从头算
极地的
电子结构
凝聚态物理
物理
材料科学
电子
量子力学
作者
Ankit Disa,Divine P. Kumah,Andrei Malashevich,Hanghui Chen,Dario A. Arena,E. D. Specht,Sohrab Ismail‐Beigi,F. J. Walker,Charles Ahn
标识
DOI:10.1103/physrevlett.114.026801
摘要
We experimentally demonstrate a novel approach to substantially modify orbital occupations and symmetries in electronically correlated oxides. In contrast to methods using strain or confinement, this orbital tuning is achieved by exploiting charge transfer and inversion symmetry breaking using atomically layered heterostructures. We illustrate the technique in the LaTiO3−LaNiO3−LaAlO3 system; a combination of x-ray absorption spectroscopy and ab initio theory reveals electron transfer and concomitant polar fields, resulting in a ∼50% change in the occupation of Ni d orbitals. This change is sufficiently large to remove the orbital degeneracy of bulk LaNiO3 and creates an electronic configuration approaching a single-band Fermi surface. Furthermore, we theoretically show that such three-component heterostructuring is robust and tunable by choice of insulator in the heterostructure, providing a general method for engineering orbital configurations and designing novel electronic systems.Received 14 November 2014DOI:https://doi.org/10.1103/PhysRevLett.114.026801© 2015 American Physical Society
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