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Magnetic skyrmions in cylindrical ferromagnetic nanostructures with chiral interactions

机译:圆柱形铁磁性纳米结构中的磁性横跨手性相互作用

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摘要

We study the geometrical conditions for stabilizing magnetic skyrmions in cylindrical nanostrips and nanotubes of ferromagnetic materials with chiral interactions. We obtain the low-temperature equilibrium state of the system implementing a simulation annealing technique for a classical spin Hamiltonian with competing isotropic exchange and chiral interactions, radial anisotropy and an external field. We address the impact of surface curvature on the formation, the shape and the size of magnetic skyrmions. We demonstrate that the evolution of the skyrmion phase with the curvature is controlled by the competition between two characteristic lengths, namely the curvature radius, R (geometrical length) and the skyrmion radius, R_(sk) (physical length). In narrow nanotubes (R < R(sk)) the skyrmion phase evolves to a stripe phase, while in wide nanotubes (R > R_(sk)) a mixed skyrmion-stripe phase emerges. Most interestingly, the mixed phase is characterized by spatially separated skyrmions from stripes owing to the direction of the applied field relative to the surface normal. In the stability regime (R approx> R_(sk)) skyrmions remain circular and preserve their size as a consequence of their topological protection. Zero-field skyrmions are shown to be stable on curved nanoelements with free boundaries within the same stability region (R approx> R_(sk)). The experimental and technological perspectives from the stability of skyrmions on cylindrical surfaces are discussed.
机译:我们研究了用手性相互作用稳定圆柱形纳米纳秒和纳米管中的磁性臭氧的几何条件。我们获得了系统的低温平衡状态,实现了具有竞争各向同性交换和手性相互作用,径向各向异性和外部场的经典自旋汉密尔顿型的仿真退火技术。我们解决了表面曲率对磁性臭氧层的形成,形状和尺寸的影响。我们表明,曲率与曲率的阶段阶段的演变由两个特征长度之间的竞争控制,即曲率半径,R(几何长度)和斯基序列半径,R_(SK)(物理长度)。在窄纳米管(R R_(SK))的混合的斯基硫酮条纹相出来。最有意义地,混合相的特征在于由于施加的场的方向相对于表面法线而从条带中的空间分离的臭氧。在稳定性方案中(R约> R_(SK))斯基金保持圆形,并根据其拓扑保护而保持其尺寸。 Zero-Field Skyrmions显示在具有相同稳定区域内的自由边界的弯曲纳米元件上稳定(R大约> R_(SK))。讨论了来自圆柱形表面上的臭虫稳定性的实验和技术观点。

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  • 来源
    《Physical review》 |2020年第5期|054439.1-054439.10|共10页
  • 作者单位

    Department of Education School of Pedagogical and Technological Education Athens GR-15122;

    Core Department National and Kapodistrian University of Athens Evripos Campus Evia GR-34400;

    Department of Physics National and Kapodistrian University of Athens Athens GR-15784;

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