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A theory of skyrmion crystal formation

机译:skyrmion晶体形成的理论

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摘要

A generic theory about skyrmion crystal (SkX) formation in chiral magnetic thin films and its fascinating thermodynamic behaviours is presented. A chiral magnetic film can have many metastable states with an arbitrary skyrmion density up to a maximal value when the parameter κ, which measures the relative Dzyaloshinskii–Moriya interaction (DMI) strength, is large enough. The lowest energy state of an infinite film is a long zig-zag ramified stripe skyrmion occupying the whole film in the absence of a magnetic field. Under an intermediate field perpendicular to the film, the lowest energy state has a finite skyrmion density. This is why a chiral magnetic film is often in a stripy state at a low field and a SkX only around an optimal field when κ is above a critical value. The lowest energy state is still a stripy helical state no matter with or without a field when κ is below the critical value. The multi-metastable states explain the thermodynamic path dependences of the various metastable states of a film. The decrease of the κ value with the temperature explains why SkXs become metastable at low temperatures in many skyrmion systems. These findings open a new avenue for SkX manipulation and skyrmion-based applications.
机译:一个通用的理论skyrmion晶体(SkX)手性磁性薄膜及其形成迷人的热力学行为是提出了。与任意skyrmion亚稳状态密度极大值时,参数κ,相对的措施Dzyaloshinskii-Moriya交互(DMI)的力量,足够大。无限的电影是一个漫长曲折的分歧的条纹在没有skyrmion占据整个电影的磁场。垂直于电影,最低的能量国家有限skyrmion密度。一个手性磁膜通常是条纹状的状态在低场和SkX只有一个最优κ高于临界值时字段。最低能态仍然是一个条纹状的螺旋国家不管有或没有一个字段当κ低于临界值。州解释热力学的路径依赖性各种亚稳状态的电影。κ值的降低温度解释了为什么SkXs成为亚稳在低温度在许多skyrmion系统。发现操纵SkX研究开辟新途径和skyrmion-based应用程序。

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