Magnetic Solitons in Hierarchical 3D Magnetic Nanoarchitectures of Nanoflower Shape
Магнитные солитоны в иерархических 3D магнитных наноархитектурах цветочной формы (nanoflower)
2024-11-26
SCID: 54.1/me2sn37e
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3D magnetic nanoarchitectures3D magnonicsBloch linesMagnetic solitonsanodized aluminum oxide templateasymmetric vortexcurvilinear magnetismmagnetic imagingmagnetostatics-driven symmetry breakmicromagnetic simulationsnanoflowershifted vortexspintronics
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Abstract (AI)
Curvilinear magnetism emerged as a new route to tailor properties of magnetic solitons by the choice of geometry and topology of a magnetic architecture. Here, we develop an anodized aluminum oxide template-based approach to realize hierarchical 3D magnetic nanoarchitectures of nanoflower shape. The technique provides defect-free regular arrays of magnetic nanoflowers of tunable shape with a period of 400 nm over cm2 areas. We combined advanced magnetic imaging methods with micromagnetic simulations to study complex magnetic states in nanoflowers originating due to magnetostatics-driven symmetry break in curvilinear nanomembranes. An interaction between surface and volume magnetostatic charges in 3D curved nanoflowers leads to the stabilization of asymmetric and shifted vortices as well as states with two Bloch lines. Ordered large area arrays of complex-shaped magnetic nanoarchitectures developed in this work are relevant for prospective research on 3D magnonics and spintronics.
Key Findings
1
Combined advanced magnetic imaging and micromagnetic simulations to analyze complex magnetic states in nanoflowers arising from magnetostatics-driven symmetry breaking in curvilinear nanomembranes
2
Developed an anodized aluminum oxide template-based method to fabricate defect-free regular arrays of magnetic nanoflowers with tunable shape and 400 nm period over cm^2 areas
3
Interaction between surface and volume magnetostatic charges in 3D curved nanoflowers leads to stabilization of states containing two Bloch lines
4
Interaction between surface and volume magnetostatic charges in 3D curved nanoflowers stabilizes asymmetric and shifted vortices
5
Ordered large-area arrays of complex-shaped 3D magnetic nanoarchitectures are suitable platforms for future 3D magnonics and spintronics research
Research Object
Hierarchical 3D magnetic nanoarchitectures of nanoflower shape (ordered arrays of magnetic nanoflowers)
Research Subject
Complex magnetic states and magnetostatic interactions in curved 3D nanoflowers, including stabilization of asymmetric/shifted vortices and states with two Bloch lines due to surface–volume magnetostatic charge interaction and curvature-induced symmetry breaking
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2024-11-26
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