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20242026
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cond-mat.mtrl-sci2026

Mapping Reversal Pathways and Interaction Fields in Artificial Spin Ice

Brindaban Ojha, Matías P. Grassi, Vassilios Kapaklis

In artificial spin ice (ASI), magnetic interactions between nanomagnets determine both the stable states and the switching pathways under an applied field. Here, first-order revers…

cond-mat.mtrl-sci2026

Probing deuterium-induced magnetic phase transitions in TbCo alloys with in-situ polarized neutron reflectometry

Robbie G. Hunt, Gunnar K. Pálsson, Matías P. Grassi +3

Hydrogen-based magneto-ionics is a promising approach for rapid magnetoelectric control of spintronic devices. Most investigations so far into the magneto-ionic manipulation of rar…

cond-mat.mtrl-sci2024

Control of Ferrimagnetic Compensation and Perpendicular Anisotropy in TbCo with H ion implantation

Robbie G. Hunt, Dmitrii Moldarev, Matías P. Grassi +2

The tuning of magnetic properties through electrochemical loading of hydrogen has recently attracted significant interest as a way to manipulate magnetic devices with electric fiel…

cond-mat.mtrl-sci2024

Magnetic metamaterials by ion-implantation

Christina Vantaraki, Petter Ström, Tuan T. Tran +6

We present a method for the additive fabrication of planar magnetic nanoarrays with minimal surface roughness. Synthesis is accomplished by combining electron-beam lithography, use…

cond-mat.mtrl-sci2024

The effect of iron layer thickness on the interlayer exchange coupling in Fe/MgO (001) superlattices

Anna L. Ravensburg, Matías P. Grassi, Björgvin Hjövarsson +1

We describe the effect of the Fe layer thickness on the antiferromagnetic interlayer exchange coupling in [Fe/MgO] superlattices. An increase in coupling strength with increasi…