Antiferromagnetic transition metal oxides are an established and widely studied materials system in the context of spin-based electronics, commonly used as passive elements in …
We demonstrate how shape-dependent strain can be used to control antiferromagnetic order in NiO/Pt thin films. For rectangular elements patterned along the easy and hard …
Switchability of materials properties by applying controlled stimuli such as voltage pulses is an emerging field of study with applicability in adaptive and programmable devices like …
Antiferromagnetic materials hold potential for use in spintronic devices with fast operation frequencies and field robustness. Despite the rapid progress in proof-of-principle …
Transition metal oxide thin films and heterostructures are promising platforms to achieve full control of the antiferromagnetic (AFM) domain structure in patterned features as needed for …
Using soft x-ray spectromicroscopy, we investigate the magnetic domain structure in embedded nanomagnets defined in L a 0.7 S r 0.3 Mn O 3 thin films and LaFe O 3/L a 0.7 S r …
MS Lee, RV Chopdekar, P Shafer, E Arenholz… - AIP Advances, 2020 - pubs.aip.org
The ability to systematically modify the magnetic properties of epitaxial La 0.7 Sr 0.3 MnO 3 thin films is demonstrated through the use of Ar+ ion implantation. With increasing implant …
Engineered topological spin textures with submicron dimensions in magnetic materials have emerged in recent years as the building blocks for various spin-based memory devices …
AD Bang, FK Olsen, SD Slöetjes, A Scholl… - Applied Physics …, 2018 - pubs.aip.org
In this study, we report on the magnetic domain formation in ultrathin blanket films and patterned micro-and nanostructures of ferromagnetic (FM) La 0.7 Sr 0.3 MnO 3 single-layers …