Polarity and Spin–Orbit Coupling Induced Strong Interfacial Exchange Coupling: An Asymmetric Charge Transfer in Iridate–Manganite Heterostructure
作者:Tao Yu, Bei Deng, Liang Zhou, Pingbo Chen, Qiying Liu, Cailin Wang, Xingkun Ning, Jingtian Zhou, Zhiping Bian, Zhenlin Luo, Chunyin Qiu, Xingqiang Shi, Hongtao He · 发表于:ACS Applied Materials & Interfaces · 年份:2019 · DOI:10.1021/acsami.9b14641 · 被引用次数:13 · 研究领域:Magnetic and transport properties of perovskites and related materials、Advanced Condensed Matter Physics、Electronic and Structural Properties of Oxides
Charge transfer is of particular importance in manipulating the interface physics in transition-metal oxide heterostructures. In this work, we have fabricated epitaxial bilayers composed of polar 3d LaMnO 3 and nonpolar 5d SrIrO 3 . Systematic magnetic measurements reveal an unexpectedly large exchange bias effect in the bilayer, together with a dramatic enhancement of the coercivity of LaMnO 3 . Based on first-principle calculations and X-ray absorption spectroscopy measurements, such a strong interfacial magnetic coupling is found closely associated with the polar nature of LaMnO 3 and the strong spin–orbit interaction in SrIrO 3, which collectively drive an asymmetric interfacial charge transfer and lead to the emergence of an interfacial reentrant spin/superspin glass state. Our study provides a new insight into the charge transfer in transition-metal oxide heterostructures and offers a novel means to tune the interfacial exchange coupling for a variety of device applications.