Emergent Ferromagnetism in CaRuO<sub>3</sub>/CaMnO<sub>3</sub> (111)-Oriented Superlattices.
basic_science · Level V
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- Record sourced from PubMed, PMID 38367281.
- Also identified by DOI 10.1021/acs.nanolett.3c04623.
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Abstract
The boundary between CaRuO<sub>3</sub> and CaMnO<sub>3</sub> 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 CaMnO<sub>3</sub> 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 CaRuO<sub>3</sub>/CaMnO<sub>3</sub> heterostructures along the (111) instead of the (001) crystallographic axis, we achieve a 3-fold enhancement of the magnetization and involve the CaRuO<sub>3</sub> layers in the ferromagnetism, which now spans both constituent materials. The stabilization of a net magnetic moment in CaRuO<sub>3</sub> 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.