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Topological Spin‐Texture Transitions in van der Waals Magnets Revealed by X‐Ray Fourier Transform Holography

Chowdhury, Sourav ; Dash, Soumyaranjan; Schneider, Michael; Klose, Christopher; Sharma, Chithra H.; Kern, Lisa-Marie; Butcher, Tim A.; Fuchs, Josefin; Pakhira, Santanu 1; DuttaGupta, Samik; Taniguchi, Takashi; Watanabe, Kenji; Das, Sujit; Kumar, Sanjeev ; Pfau, Bastian; Haghighirad, Amir-Abbas 2; Hoesch, Moritz
1 Karlsruher Institut für Technologie (KIT)
2 Institut für QuantenMaterialien und Technologien (IQMT), Karlsruher Institut für Technologie (KIT)

Abstract:

Nontrivial topological spin-textures, such as skyrmions, merons, bimerons, and skyrmioniums, are envisioned as robust building blocks for future memory and logic devices. Controllable transformations between these states require a quantum-mechanical description of electronic degrees of freedom and atomic-scale insight beyond existing phenomenological models. Here, we report an atomic-scale investigation of topological phase transitions and their protection in the two-dimensional van der Waals ferromagnet Fe$_3$GeTe$_2$ (FGT) using a combined experimental-theoretical approach. Synchrotron-based Fourier transform holography directly images labyrinth domains, isolated skyrmions, mixed labyrinth-skyrmion phases, and skyrmion bags with high spatial resolution. We compare these observations to simulations based on an electronic lattice Hamiltonian that captures both metallicity and relativistic spin-orbit coupling in FGT. By systematically exploring a broad range of temperatures and magnetic fields, we map the mechanisms governing topological transitions and their stability. This sequential-integrated experimental-theoretical framework advances understanding of spin-texture interactions and enables precise control of external tuning parameters. ... mehr


Verlagsausgabe §
DOI: 10.5445/IR/1000196983
Veröffentlicht am 14.09.2026
Cover der Publikation
Zugehörige Institution(en) am KIT Institut für QuantenMaterialien und Technologien (IQMT)
Publikationstyp Zeitschriftenaufsatz
Publikationsjahr 2026
Sprache Englisch
Identifikator ISSN: 0935-9648, 1521-4095
KITopen-ID: 1000196983
HGF-Programm 47.11.02 (POF IV, LK 01) Emergent Quantum Phenomena
Erschienen in Advanced Materials
Verlag John Wiley and Sons
Seiten e74883
Vorab online veröffentlicht am 08.09.2026
Schlagwörter ferromagnetism, Fourier transform, holography, magnetic field, physics, skyrmion, spintronics, topological order, van der Waals epitaxy
Nachgewiesen in OpenAlex
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