Bhat Vinayak Shantaram, Watanabe Sho, Kronast Florian, Baumgaertl Korbinian, Grundler Dirk
Laboratory of Nanoscale Magnetic Materials and Magnonics, Institute of Materials (IMX), École Polytechnique Fédérale de Lausanne (EPFL), 1015 Lausanne, Switzerland.
International Research Centre MagTop, Institute of Physics, Polish Academy of Sciences, 02668 Warsaw, Poland.
Commun Phys. 2023;6(1):193. doi: 10.1038/s42005-023-01310-0. Epub 2023 Jul 29.
Aperiodicity and un-conventional rotational symmetries allow quasicrystalline structures to exhibit unusual physical and functional properties. In magnetism, artificial ferromagnetic quasicrystals exhibited knee anomalies suggesting reprogrammable magnetic properties via non-stochastic 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 NiFe 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.
非周期性和非常规旋转对称性使得准晶结构展现出非同寻常的物理和功能特性。在磁性方面,人工铁磁准晶表现出膝部异常,这表明通过非随机切换可实现可重新编程的磁性。然而,对于优化的可重构功能,短程交换和长程偶极相互作用的决定性作用尚未明确。我们报道了对不同准晶晶格进行的宽带自旋波光谱和X射线光电子能显微镜研究,这些准晶晶格由排列在具有不同交换和偶极相互作用的非周期性彭罗斯和阿曼镶嵌图案上的铁磁NiFe纳米棒组成。我们对部分反转的准晶的磁态进行了成像,并根据电荷模型、几何阻挫和磁通闭合环的形成对其构型进行了分析。仅发现交换耦合晶格表现出特定于非周期性的集体现象和非随机切换。在小回线测量中,交换耦合和偶极耦合的准晶均显示出具有窄线宽的磁振子激发。由此,自旋电子学和磁子学中的可重构功能成为现实。