铁磁性
凝聚态物理
反铁磁性
超晶格
异质结
材料科学
磁矩
物理
作者
Margaret Kane,Churna Bhandari,Megan E. Holtz,Purnima P. Balakrishnan,Alexander J. Grutter,M. R. Fitzsimmons,Chao‐Yao Yang,S. Satpathy,Durga Paudyal,Y. Suzuki
出处
期刊:Nano Letters
[American Chemical Society]
日期:2024-02-17
卷期号:24 (8): 2567-2573
标识
DOI:10.1021/acs.nanolett.3c04623
摘要
The boundary between CaRuO3 and CaMnO3 is an ideal test bed for emergent magnetic ground states stabilized through interfacial electron interactions. In this system, nominally antiferromagnetic and paramagnetic materials combine to yield interfacial ferromagnetism in CaMnO3 due to electron leakage across the interface. In this work, we show that the crystal symmetry at the surface is a critical factor determining the nature of the interfacial interactions. Specifically, by growing CaRuO3/CaMnO3 heterostructures along the (111) instead of the (001) crystallographic axis, we achieve a 3-fold enhancement of the magnetization and involve the CaRuO3 layers in the ferromagnetism, which now spans both constituent materials. The stabilization of a net magnetic moment in CaRuO3 through strain effects has been long-sought but never consistently achieved, and our observations demonstrate the importance of interface engineering in the development of new functional heterostructures.
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