collaborators

6 papers

cond-mat.mtrl-sci2026

Gilbert Damping Parameters of Epitaxially-Stabilized Iron Gallium Thin Films from Ferromagnetic Resonance

Ruth Loh, Sujan Shrestha, Jiaxuan Wu +4

Iron gallium (FeGa) alloys are excellent rare-earth-free magnetostrictors. Through epitaxial stabilization, the disordered A2 alloy can be extended from 19% to 30% gallium resultin…

physics.app-ph2025

Nonlinear Strain-Mediated Magnetoelectric Coupling in Sub-Microscale Ni/BPZT Thin-Film Devices

Fanfan Meng, Emma Van Meirvenne, Federica Luciano +6

Strain-mediated magnetoelectric (ME) heterostructures enable electric-field control of magnetism and are promising for ultra-low-power spintronic logic. Yet achieving spatially sel…

physics.app-ph2025

Modelling spin-wave interference with electromagnetic leakage in micron-scaled spin-wave transducers

Felix Kohl, Björn Heinz, Matthias Wagner +3

Utilization of spin-wave transducers for radio-frequency signal processing provides significant potential due to intrinsic tunability, scalability and nonlinearity. However, such c…

physics.app-ph2025

Charge accumulation by Direct Magnetoelectric Effect in ScAlN/Ni Nanoscale Devices

Federica Luciano, Emma Van Meirvenne, Ephraim Spindler +6

This work investigates the direct magnetoelectric effect in thin-film lab scale composite heterostructures comprising a 100 nm thick piezoelectric Sc0.4Al0.6N (ScAlN) and a magneto…

cond-mat.mes-hall2025

Power Transfer in Magnetoelectric Resonators: a Combined Analytical and Finite Element Study

Emma Van Meirvenne, Frederic Vanderveken, Daniele Narducci +3

We present an analytical model for power transfer in a magnetoelectric film bulk acoustic resonator (FBAR) comprising a piezoelectric-magnetostrictive bilayer. The model describes…

physics.app-ph2025

Self Biased Integrated Magnonic Device

Maria Cocconcelli, Federico Maspero, Andrea Micelli +13

In the race towards "beyond 6G" telecommunication platforms, magnonics emerges as a promising solution due to its wide tunability within the FR3 band (7-24 GHz). So far, however, t…