论文标题
旋转动力学,循环形成和与量身定制的交换耦合的人工准晶体中的合作逆转
Spin Dynamics, Loop Formation and Cooperative Reversal in Artificial Quasicrystals with Tailored Exchange Coupling
论文作者
论文摘要
多个和非规定的旋转对称性允许准晶结构具有前所未有的物理和功能特性。在磁性中,人工铁磁准晶体表现出膝盖异常,暗示了通过非固定切换的可重编程磁性特性。但是,尚未阐明短程交换和远距离偶性相互作用的决定性作用,以优化可重新配置的功能。我们报告了不同的准晶体晶格上的宽带自旋波光谱和X射线光发射电子显微镜,这些晶格由在上的penrose和Ammann瓷砖上排列的铁电磁Ni81Fe19纳米骨架组成,具有不同的交换和二极化的相互作用。我们成像了部分逆转的准晶体的磁态,并根据电荷模型,几何挫败感和磁通环路的形成分析了它们的配置。仅发现交换耦合晶格才能显示出特定于特定于特定的集体现象和非策略转换。交换和双偶性耦合的准晶体都表现出宏伟的激发,在小环测量中,线宽狭窄。因此,旋转和镁化的可重新配置功能变得现实。
Aperiodicity and un-conventional rotational symmetries allow quasicrystalline structures to exhibit unprecedented physical and functional properties. In magnetism, artificial ferromagnetic quasicrystals exhibited knee anomalies suggesting reprogrammable magnetic properties via nonstochastic switching. However, the decisive roles of short-range exchange and long-range dipolar interactions have not yet been clarified for optimized reconfigurable functionality. We report broadband spin-wave spectroscopy and X-ray photoemission electron microscopy on different quasicrystal lattices consisting of ferromagnetic Ni81Fe19 nanobars arranged on aperiodic Penrose and Ammann tilings with different exchange and dipolar interactions. We imaged the magnetic states of partially reversed quasicrystals and analyzed their configurations in terms of the charge model, geometrical frustration and the formation of flux-closure loops. Only the exchange-coupled lattices are found to show aperiodicity-specific collective phenomena and non-stochastic switching. Both, exchange and dipolarly coupled quasicrystals show magnonic excitations with narrow linewidths in minor loop measurements. Thereby reconfigurable functionalities in spintronics and magnonics become realistic.