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Fundamental changes in the magnetic structure of macroscopic magnetically ordered materials occur when the physical size is reduced.
Optical simulations are performed in a realistic magnetic structure for the four dipole magnets.
Our results represent an important conceptual advance in understanding the nature of structural disorder in ferrihydrite and its relation to the magnetic structure and also serve to validate a controversial, recently proposed structural model for this phase.
The magnetic structure was assembled from a set of 500 magnets that were purchased from Shin-Etsu.
One of such features is a topological charge which characterized a direction of magnetization vector M → reversal in the center of magnetic structure.
Under heating in the applied field, the magnetic structure gradually transforms from canted to collinear, which increases the magnetization.
The external field was decreasing until in-plane magnetic structure became unstable with respect to nucleation of out-of-plane local magnetization of the vortex state.
Figure 1: Simulated magnetic structure and L-TEM images of Néel skyrmions.
(g) Schematic illustration of the magnetic structure of chiral 360° Néel domains.
Wakabayashi, K., Fujita, M., Kusakabe, K. & Nakada, K. Magnetic structure of graphite ribbon.
Rodríguez-Carvajal, J. Recent advances in magnetic structure determination by neutron powder diffraction.
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