Realizing Intralayer Magnetoelectric Coupling in Two-Dimensional Frustrated Multiferroic Heterostructures.
basic_science · Level V
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- Record sourced from PubMed, PMID 39789900.
- Also identified by DOI 10.1021/acs.nanolett.4c04998.
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Abstract
Recent studies have demonstrated the ability to switch weakly coupled interlayer magnetic orders by using electric polarization in insulating van der Waals heterostructures. However, controlling strongly coupled intralayer magnetic orders remains a significant challenge. In this work, we propose that frustrated multiferroic heterostructures can exhibit enhanced intralayer magnetoelectric coupling. Through first-principles calculations, we have investigated a heterostructure composed of MnBr<sub>2</sub> and Nb<sub>3</sub>I<sub>8</sub>, wherein there is a competition between frustrated intralayer magnetic orders within the MnBr<sub>2</sub> and interlayer magnetic coupling via a unique spin-local field effect. As a result, manipulating the vertical electric polarization of the Nb<sub>3</sub>I<sub>8</sub> layer successfully controls the ground-state intralayer magnetic order in the frustrated MnBr<sub>2</sub> layer, inducing transitions between zigzag antiferromagnetic and ferromagnetic orders. Our findings offer a novel approach to controlling intralayer spin structures, paving the way for advancements in spintronic applications in a single atomic layer, which cannot be achieved by interlayer magnetoelectric coupling.