Beyond the Interface Limit: Structural and Magnetic Depth Profiles of Voltage-Controlled Magneto-Ionic Heterostructures
arXiv:1605.07209 · doi:10.1038/ncomms12264
Abstract
Electric-field control of magnetism provides a promising route towards ultralow power information storage and sensor technologies. The effects of magneto-ionic motion have so far been prominently featured in the direct modification of interface chemical and physical characteristics. Here we demonstrate magnetoelectric coupling moderated by voltage-driven oxygen migration beyond the interface limit in relatively thick AlOx/GdOx/Co (15 nm) films. Oxygen migration and its ramifications on the Co magnetization are quantitatively mapped with polarized neutron reflectometry under thermal and electro-thermal conditionings. The depth-resolved profiles uniquely identify interfacial and bulk behaviors and a semi-reversible suppression and recovery of the magnetization. Magnetometry measurements show that the conditioning changes the microstructure so as to disrupt long-range ferromagnetic ordering, resulting in an additional magnetically soft phase. X-ray spectroscopy confirms electric field induced changes in the Co oxidation state but not in the Gd, suggesting that the GdOx transmits oxygen but does not source or sink it. These results together provide crucial insight into controlling magnetic heterostructures via magneto-ionic motion, not only at the interface, but also throughout the bulk of the films.
References in corpus (6)
- Magneto-ionic Control of Interfacial Magnetism
- Reversible control of Co magnetism by voltage induced oxidation
- Quantitative Decoding of Interactions in Tunable Nanomagnet Arrays Using First Order Reversal Curves
- Determination of the effective transverse coherence of the neutron wave packet as employed in reflectivity investigations of condensed matter structures Part I: Measurements
- Probing the A1 to L10 Transformation in FeCuPt Using the First Order Reversal Curve Method
- Frustration Driven Stripe Domain Formation in Co/Pt Multilayer Films
Cited by in corpus (19)
- Recent progress in voltage control of magnetism: Materials, mechanisms, and performance
- Fast magneto-ionic switching of interface anisotropy using yttria-stabilized zirconia gate oxide
- Ionic Tuning of Cobaltites at the Nanoscale
- Nitrogen-Based Magneto-Ionic Manipulation of Exchange Bias in CoFe/MnN Heterostructures
- Giant Electrostatic Modification of Magnetism via Electrolyte-Gate-Induced Cluster Percolation in LaSrCoO
- Electrically Enhanced Exchange Bias via Solid State Magneto-Ionics
- Elucidating proximity magnetism through polarized neutron reflectometry and machine learning
- Interfacial-Redox-Induced Tuning of Superconductivity in YBaCuO
- Multiple magneto-ionic regimes in Ta/CoFeB/HfO
- Magnetization reversal in Kagome artificial spin ice studied by first-order reversal curves
- Ion irradiation and implantation modifications of magneto-ionically induced exchange bias in Gd/NiCoO
- Hydroxide-based magneto-ionics: electric-field control of reversible paramagnetic-to-ferromagnetic switch in -Co(OH) films
- First-Order Reversal Curves of the Magnetostructural Phase Transition in FeTe
- Magneto-Ionic Physical Reservoir Computing
- Ionically-Driven Synthesis and Exchange Bias in MnN/MnN Heterostructures
- Depth Profiling of Oxygen Migration in Ta/HfO2 Stacks During Ionic Liquid Gating
- Boosting room temperature magneto-ionics in Co3O4
- Electrical control of metallic heavy-metal/ferromagnet interfacial states
- Nitrogen magneto-ionics