activity
20112014
most citedElectric field driven magnetic domain wall motion in ferromagnetic-ferroelectric heterostructures

26 citations · 26 across the 2 of their papers we have counts for

collaborators

6 papers

cond-mat.mtrl-sci2014

Reversible Electric-Field Driven Magnetic Domain Wall Motion

Kévin J. A. Franke, Ben Van de Wiele, Yasuhiro Shirahata +3

Control of magnetic domain wall motion by electric fields has recently attracted scientific attention because of its potential for magnetic logic and memory devices. Here, we repor…

cond-mat.mes-hall2014

Overcoming damping in spin wave propagation: A continuous excitation approach to determine time-dependent dispersion diagrams in 2D magnonic crystals

Ben Van de Wiele, Federico Montoncello

We propose an alternative micromagnetic approach to determine the spin wave dispersion relations in magnonic structures. Characteristic of the method is that a limited area of the…

cond-mat.mtrl-sci2014★ 26 cited

Electric field driven magnetic domain wall motion in ferromagnetic-ferroelectric heterostructures

Ben Van de Wiele, Lasse Laurson, Kévin Franke +1

We investigate magnetic domain wall (MDW) dynamics induced by applied electric fields in ferromagnetic-ferroelectric thin-film heterostructures. In contrast to conventional driving…

cond-mat.mes-hall2013

Influence of material defects on current-driven vortex domain wall mobility

J. Leliaert, B. Van de Wiele, A. Vansteenkiste +4

Many future concepts for spintronic devices are based on the current-driven motion of magnetic domain walls through nanowires. Consequently a thorough understanding of the domain w…

cond-mat.mtrl-sci2011

Observation of non-linear magnetic vortex gyration by X-ray microscopy and micromagnetic simulations

Arne Vansteenkiste, Ben Van de Wiele, Markus Weigand +7

Magnetic vortex gyration in a 500 nm wide, 50 nm thick Permalloy square platelet was investigated using time-resolved scanning transmission x-ray microscopy and micromagnetic simul…

physics.comp-ph2011

MuMax: a new high-performance micromagnetic simulation tool

Arne Vansteenkiste, Ben Van de Wiele

We present MuMax, a general-purpose micromagnetic simulation tool running on Graphical Processing Units (GPUs). MuMax is designed for high performance computations and specifically…