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Wednesday, March 4, 2026

Layer-Polarization Engineered Ferroelectricity and Anomalous Valley Corridor Results in van der Waals Bilayer


Layertronics, engineering the digital properties by means of layer diploma of freedom, has attracted appreciable consideration because of its promising purposes in next-generation spintronic applied sciences. Right here, by coupling sliding ferroelectricity with A-type antiferromagnetism, we display a mechanism for layer-polarization engineered digital property by means of the symmetry evaluation primarily based on tight-binding (TB) mannequin. It’s discovered that the inversion symmetry and time-inversion symmetry breaking within the mannequin offers rise to ferroelectricity and layer-polarized anomalous valley Corridor impact. Crucially, this valley polarization is ferroelectrically switchable, enabling non-volatile electrical management of layer-resolved Berry curvature. Utilizing first-principles calculations, this mechanism and phenomena is verified in multiferroic bilayer Janus RuClF. Our findings present a promising platform for 2D bilayer supplies, which maintain nice potential for purposes in nanoelectronic and spintronic units.

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