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Topological magnetic (anti)skyrmions are robust string-like objects heralded as potential components in next-generation topological spintronics devices due to their low-energy manipulability via stimuli such as magnetic fields, heat, and electric/thermal current. While these 2D topological objects are widely studied, intrinsically 3D electron-spin real-space topology remains less explored despite its prevalence in bulky magnets. 2D-imaging studies reveal peculiar vortex-like contrast in the core regions of spin textures present in antiskyrmion-hosting thin plate magnets with S crystal symmetry, suggesting a more complex 3D real-space structure than the 2D model suggests. Here, holographic vector field electron tomography captures the 3D structure of antiskyrmions in a single-crystal, precision-doped (FeNiPd)P (FNPP) lamellae at room temperature and zero field. These measurements reveal hybrid string-like solitons composed of skyrmions with topological number W = -1 on the lamellae's surfaces and an antiskyrmion (W = + 1) connecting them. High-resolution images uncover a Bloch point quadrupole (four magnetic (anti)monopoles that are undetectable in 2D imaging) which enables the observed lengthwise topological transitions. Numerical calculations corroborate the stability of hybrid strings over their conventional (anti)skyrmion counterparts. Hybrid strings result in topological tuning, a tunable topological Hall effect, and the suppression of skyrmion Hall motion, disrupting existing paradigms within spintronics.
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http://dx.doi.org/10.1002/adma.202311737 | DOI Listing |
Direct myelin imaging with inversion-recovery ultrashort-echo-time (IR-UTE) is highly motion-sensitive, yet extra hardware or longer scans are impractical. We evaluated whether a superior-inferior (SI) self-navigator with bit-reversed spoke-angles mitigates motion artifacts without extending acquisition. Dual-echo IR-UTE was implemented at 3T.
View Article and Find Full Text PDFNanoscale
August 2025
Department of Materials Science and Engineering, Seoul National University, Seoul 08826, South Korea.
Precise control over the emission direction of colloidal quantum dots (CQDs), which are promising color conversion materials for micro-light-emitting-diode displays, is increasingly important for augmented-reality and virtual-reality near-eye optics. Here, we report a fully dielectric silicon nitride (SiN) photonic crystal (PhC) platform that boosts CQD photoluminescence by an 8.5-fold increase while compressing the angular full-width at half-maximum to 6.
View Article and Find Full Text PDFPhys Chem Chem Phys
August 2025
Ronin Institute, Montclair, New Jersey 07043, USA.
The Kramers degeneracy theorem in a condensed-matter system is proven by the orthogonality of wavefunctions transformed by two time-reversal symmetries: the conventional symmetry of = -1 and the supplementary symmetry of = +1, valid for a vanishing spin-orbit coupling term. The Bloch state may then remain nondegenerate for a finite spin-orbit coupling term, but must become degenerate for a vanishing spin-orbit coupling term at any symmetry point. The theorem is demonstrated for a representative system GaAs on the basis of first-principles calculations.
View Article and Find Full Text PDFWe present the multiple scattering theory-broadband Green's function (MST-BBGF) method for fast calculation of band diagrams in 3D photonic crystals with complex and dense scatterers. The method leverages higher-order T-matrix extraction from far fields. In dense scatterer configurations, where scatterers are closely spaced between adjacent cells, higher order vector spherical waves are incorporated to accurately model strong inter-scatterer interactions.
View Article and Find Full Text PDFNat Commun
August 2025
Max Planck Institute for Chemical Physics of Solids, Dresden, Germany.
Topological defects, or singularities, play a key role in the statics and dynamics of complex systems. In magnetism, Bloch point singularities represent point defects that mediate the nucleation of textures such as skyrmions and hopfions. While these textures are typically stabilised in chiral magnets, the influence of chirality and symmetry breaking on Bloch point singularities remains relatively unexplored.
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