论文标题
揭示了磁性多层中手性旋转纹理的新兴特征
Unveiling the emergent traits of chiral spin textures in magnetic multilayers
论文作者
论文摘要
磁性天际是在拓扑上缠绕的纳米级纹理,其环境稳定性和多层膜中的电气操纵导致研究活动的爆炸爆炸。尽管过去的努力主要集中在孤立的天空上,但最近的手性自旋纹理的集合(包括天空和磁条纹组成)被证明具有丰富的相互作用,与设备应用的潜力具有丰富的相互作用。然而,手性自旋纹理现象学的几个基本方面仍有待阐明,包括它们的结构壁结构,热力学稳定性和形态学转变。在这里,我们在可调的多层平台上揭示了这些纹理特征的演变 - 其中使用全场电子和软X射线显微镜与数值模拟的旋转纹理能量的手性相互作用可以广泛变化。随着手性相互作用的增加,我们证明了Néel螺旋性的出现,随后是域的可压缩性的显着降低,最后是Skyrmion形成机制的转化。这些实验与分析模型一起建立了一个全面的微观框架,用于研究和调整多层膜中的手性旋转纹理特征。
Magnetic skyrmions are topologically wound nanoscale textures of spins whose ambient stability and electrical manipulation in multilayer films have led to an explosion of research activities. While past efforts focused predominantly on isolated skyrmions, recently ensembles of chiral spin textures, consisting of skyrmions and magnetic stripes, were shown to possess rich interactions with potential for device applications. However, several fundamental aspects of chiral spin texture phenomenology remain to be elucidated, including their domain wall structure, thermodynamic stability, and morphological transitions. Here we unveil the evolution of these textural characteristics on a tunable multilayer platform - wherein chiral interactions governing spin texture energetics can be widely varied - using a combination of full-field electron and soft X-ray microscopies with numerical simulations. With increasing chiral interactions, we demonstrate the emergence of Néel helicity, followed by a marked reduction in domain compressibility, and finally a transformation in the skyrmion formation mechanism. Together with an analytical model, these experiments establish a comprehensive microscopic framework for investigating and tailoring chiral spin texture character in multilayer films.