5 citations · 6 across the 4 of their papers we have counts for
4 papers
Monte Carlo Studies on Geometrically Confined Skyrmions in Nanodots: Stability and Morphology under Radial Stresses
G. Diguet, B. Ducharne, S. El Hog +4
We numerically study the stability and morphology of geometrically confined skyrmions in nanodots using Finsler geometry (FG) modeling technique. The FG model dynamically implement…
Finsler Geometry Modeling and Monte Carlo Study on Geometrically Confined Skyrmions in Nanodots
Gildas Diguet, Benjamin Ducharne, Sahbi El Hog +4
Using the Finsler geometry modeling (FG) technique without spontaneous magnetic anisotropy, we numerically study the stability and morphology of geometrically confined skyrmions ex…
Effect of Geometric Confinement on the Stabilization of Skyrmions
H. Koibuchi, F. Kato, S. El Hog +4
In this paper, we study the stability of skyrmions (SKYs) caused by the geometric confinement (GC) effect observed in nano-domains in recent experiments, where SKYs appear only ins…
Monte Carlo studies of skyrmion stabilization under geometric confinement and uniaxial strain
G. Diguet, B. Ducharne, S. El Hog +4
Geometric confinement (GC) of skyrmions in nanodomains plays a crucial role in skyrmion stabilization. This confinement effect decreases the magnetic field necessary for skyrmion f…