论文标题
手性诱导的非结合磁化和不对称结构域壁在氢化COPD薄膜中的传播
Chirality-Induced Noncollinear Magnetization and Asymmetric Domain-Wall Propagation in Hydrogenated CoPd Thin Films
论文作者
论文摘要
基于阵列的基于COPD的异质结构是通过电子束光刻和等离子体预处理产生的,这些束光刻和等离子体预处理在COPD合金膜中诱导氧化并用深度梯度诱导氧化,从而破坏了结构的中央对称性。通过磁化kerr效应显微镜观察到薄膜随访氢化的磁性特性的影响。该系统在具有和没有血浆预处理的区域之间的垂直组件中表现出强烈的垂直和侧面抗铁磁耦合,以及在磁化过程中等离子体预处理区域中的不对称域壁繁殖。这些现象表现出明显的磁性手性,可以用Ruderman-Kittel-Kasuya-Yosida耦合和Dzyaloshinskii-Moriya相互作用(DMI)来解释。这项研究中证明的样品处理允许轻松合并光刻技术,这些技术可以定义有或没有DMI的区域,以在样品上创建复杂的磁性模式,这为在未来的Spintronic设备中对倾斜旋转纹理进行更简单的控制提供了途径。
Array-patterned CoPd-based heterostructures are created through e-beam lithography and plasma pretreatment that induces oxidation with depth gradient in the CoPd alloy films, breaking the central symmetry of the structure. Effects on the magnetic properties of the follow-up hydrogenation of the thin film are observed via magneto-optic Kerr effect microscopy. The system exhibits strong vertical and lateral antiferromagnetic coupling in the perpendicular component between the areas with and without plasma pretreatment, and asymmetric domain-wall propagation in the plasma-pretreated areas during magnetization reversal. These phenomenon exhibit evident magnetic chirality and can be interpreted with the Ruderman-Kittel-Kasuya-Yosida coupling and the Dzyaloshinskii-Moriya interaction (DMI). The sample processing demonstrated in this study allows easy incorporation of lithography techniques that can define areas with or without DMI to create intricate magnetic patterns on the sample, which provides an avenue towards more sophisticate control of canted spin textures in future spintronic devices.