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Using the Finsler geometry modeling (FG) technique without spontaneous
magnetic anisotropy, we numerically study the stability and morphology of
geometrically confined skyrmions experimentally observed in nanodots. We find a
confinement effect that stabilizes skyrmions for a low external magnetic field
without mechanical stresses by decreasing the diameter of the cylindrical
lattice and strain effects that cause the sky and vortex to emerge under the
zero magnetic field. Moreover, the obtained MC data on the morphological
changes are also consistent with the reported experimental data.
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