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Skyrmions in Nanotechnology: Fundamental Properties, Experimental Advances, and Emerging Applications

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arxiv 2503.06159 v1 pith:IOERPMLV submitted 2025-03-08 cond-mat.mes-hall physics.app-ph

Skyrmions in Nanotechnology: Fundamental Properties, Experimental Advances, and Emerging Applications

classification cond-mat.mes-hall physics.app-ph
keywords skyrmionsdifferentapplicationsnanotechnologypropertiesadvancesbeenchallenges
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Skyrmions, topologically protected textures, have been observed in different fields of nanotechnology and have emerged as promising candidates for different applications due to their topological stability, low-power operation, and dynamic response to external stimuli. First introduced in particle physics, skyrmions have since been observed in different condensed matter fields, including magnetism, ferroelectricity, photonics, and acoustics. Their unique topological properties enable robust manipulation and detection, paving the way for innovative applications in room temperature sensing, storage, and computing. Recent advances in materials engineering and device integration have demonstrated several strategies for an efficient manipulation of skyrmions, addressing key challenges in their practical implementation. In this review, we summarize the state-of-the-art research on skyrmions across different platforms, highlighting their fundamental properties and characteristics, recent experimental breakthroughs, and technological potential. We present future perspectives and remaining challenges, emphasizing the interdisciplinary impact of skyrmions on nanotechnology.

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  1. Skyrmion manipulation and logic gate functionality in transition metal multilayers

    cond-mat.mtrl-sci 2025-09 reject novelty 4.0

    Micromagnetic simulations of PdFe/Ir(111) show current-driven skyrmion edge accumulation and a Slonczewski Hall angle of 89.53 degrees, but the proposed OR/AND gates encode inputs in reprogrammed barrier settings rath...