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Creation of artificial skyrmions and antiskyrmions by anisotropy engineering

机译:通过各向异性工程创建人造天敌和抗天敌

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Topologically non-trivial spin textures form a fundamental paradigm in solid-state physics and present unique opportunities to explore exciting phenomena such as the topological Hall effect. One such texture is a skyrmion, in which the spins can be mapped to point in all directions wrapping around a sphere. Understanding the formation of these spin textures, and their energetic stability, is crucial in order to control their behavior. In this work, we report on controlling the perpendicular anisotropy of continuous Co/Pt multilayer films with ion irradiation to form unique spin configurations of artificial skyrmions and antiskyrmions that are stabilized by their demagnetization energy. We elucidate their behavior using aberration-corrected Lorentz transmission electron microscopy. We also discuss the energetic stability of these structures studied through in-situ magnetizing experiments performed at room temperature, combined with micromagnetic simulations that successfully reproduce the spin textures and behavior. This research offers new opportunities towards creation of artificial skyrmion or antiskyrmion lattices that can be used to investigate not only fundamental properties of their interaction with electron currents but also technological applications such as artificial magnonic crystals.
机译:拓扑非平凡的自旋纹理形成了固态物理学的基本范式,并为探索令人兴奋的现象(如拓扑霍尔效应)提供了独特的机会。一种这样的纹理是天蝎子,其中自旋可以映射为指向围绕球体包裹的所有方向。了解这些自旋纹理的形成及其能量稳定性对于控制其行为至关重要。在这项工作中,我们报道了用离子辐照控制连续Co / Pt多层膜的垂直各向异性,以形成人工去离子和抗去离子的独特的自旋构型,并通过其去磁能使其稳定。我们使用像差校正的洛伦兹透射电子显微镜阐明了它们的行为。我们还将讨论通过在室温下进行的原位磁化实验研究的这些结构的能量稳定性,并结合成功复制自旋织构和行为的微磁模拟。这项研究为创造人造天rm子或抗天rm子晶格提供了新的机会,这些晶格不仅可以用来研究它们与电子流相互作用的基本特性,而且可以用来研究诸如人造镁铁晶体的技术应用。

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