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Ground state search hysteretic behaviour and reversal mechanism of skyrmionic textures in confined helimagnetic nanostructures

机译:局限性电磁纳米结构中的基态搜索磁滞行为和天体离子结构的反转机理

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摘要

Magnetic skyrmions have the potential to provide solutions for low-power, high-density data storage and processing. One of the major challenges in developing skyrmion-based devices is the skyrmions’ magnetic stability in confined helimagnetic nanostructures. Through a systematic study of equilibrium states, using a full three-dimensional micromagnetic model including demagnetisation effects, we demonstrate that skyrmionic textures are the lowest energy states in helimagnetic thin film nanostructures at zero external magnetic field and in absence of magnetocrystalline anisotropy. We also report the regions of metastability for non-ground state equilibrium configurations. We show that bistable skyrmionic textures undergo hysteretic behaviour between two energetically equivalent skyrmionic states with different core orientation, even in absence of both magnetocrystalline and demagnetisation-based shape anisotropies, suggesting the existence of Dzyaloshinskii-Moriya-based shape anisotropy. Finally, we show that the skyrmionic texture core reversal dynamics is facilitated by the Bloch point occurrence and propagation.
机译:磁性天rm有潜力为低功耗,高密度数据存储和处理提供解决方案。开发基于Skyrmion的设备的主要挑战之一是Skyrmion在受限的螺旋磁性纳米结构中的磁稳定性。通过对平衡态的系统研究,使用包括消磁效应的完整三维微磁模型,我们证明了在零外磁场且不存在磁晶各向异性的情况下,天空离子结构是螺旋磁性薄膜纳米结构中的最低能态。我们还报告了非基态平衡构型的亚稳区域。我们显示,即使在没有磁晶和基于退磁的形状各向异性的情况下,双稳态的天空离子纹理在具有不同核心取向的两个能量等效的天空离子状态之间也会经历滞后行为,这表明存在基于Dzyaloshinskii-Moriya的形状各向异性。最后,我们表明,Bloch点的出现和传播促进了天体离子质心的逆转动力学。

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