Litcius/Paper detail

Onset of Multiferroicity in Prototypical Single-Spin Cycloid BiFeO<sub>3</sub> Thin Films

Pauline Dufour, Amr Abdelsamie, Johanna Fischer, Aurore Finco, Angela Haykal, Martin F. Sarott, Sara Varotto, Cécile Carrétéro, Sophie Collin, Florian Godel, Nicolas Jaouen, M. Viret, Morgan Trassin, K. Bouzéhouane, V. Jacques, Jean‐Yves Chauleau, S. Fusil, Vincent Garcia

2023Nano Letters13 citationsDOIOpen Access PDF

Abstract

In the room-temperature magnetoelectric multiferroic BiFeO 3, the noncollinear antiferromagnetic state is coupled to the ferroelectric order, opening applications for low-power electric-field-controlled magnetic devices. While several strategies have been explored to simplify the ferroelectric landscape, here we directly stabilize a single-domain ferroelectric and spin cycloid state in epitaxial BiFeO 3 (111) thin films grown on orthorhombic DyScO 3 (011). Comparing them with films grown on SrTiO 3 (111), we identify anisotropic in-plane strain as a powerful handle for tailoring the single antiferromagnetic state. In this single-domain multiferroic state, we establish the thickness limit of the coexisting electric and magnetic orders and directly visualize the suppression of the spin cycloid induced by the magnetoelectric interaction below the ultrathin limit of 1.4 nm. This as-grown single-domain multiferroic configuration in BiFeO 3 thin films opens an avenue both for fundamental investigations and for electrically controlled noncollinear antiferromagnetic spintronics.

Topics & Concepts

MultiferroicsFerroelectricityCondensed matter physicsAntiferromagnetismSpintronicsMaterials scienceThin filmOrthorhombic crystal systemMagnetoelectric effectFerromagnetismNanotechnologyOptoelectronicsPhysicsOpticsDielectricDiffractionMultiferroics and related materialsFerroelectric and Piezoelectric MaterialsMagnetic and transport properties of perovskites and related materials