论文标题
单个铁磁纳米磁道的自旋波光谱
Spin-wave spectroscopy of individual ferromagnetic nanodisks
论文作者
论文摘要
对超高数据存储密度的需求不断增长,需要开发3D磁性纳米结构。在这方面,聚焦电子束诱导的沉积(Febid)是一种直接编写各种复杂纳米架构的首选技术。但是,纳米磁体的内在特性通常是鲜为人知的,几乎无法通过局部光学探针技术评估。在这里,我们证明了对半径下降至100 nm的单个圆形磁元素的空间分辨自旋波光谱。设置的关键组成部分是微波天线,其微覆盖中心部分被放置在具有良好分离的COFE-FEBID纳米刺的可移动基板上。磁盘的圆对称性产生了站立的自旋波共振,并允许使用分析理论来扣除饱和磁化的材料和材料的交换刚度。提出的方法对于为3D纳米磁性和镁质的直接写入元素的表征特别有价值。
The increasing demand for ultrahigh data storage densities requires development of 3D magnetic nanostructures. In this regard, focused electron beam induced deposition (FEBID) is a technique of choice for direct-writing of various complex nano-architectures. However, intrinsic properties of nanomagnets are often poorly known and can hardly be assessed by local optical probe techniques. Here, we demonstrate spatially resolved spin-wave spectroscopy of individual circular magnetic elements with radii down to 100 nm. The key component of the setup is a microwave antenna whose microsized central part is placed over a movable substrate with well-separated CoFe-FEBID nanodisks. The circular symmetry of the disks gives rise to standing spin-wave resonances and allows for the deduction of the saturation magnetization and the exchange stiffness of the material using an analytical theory. The presented approach is especially valuable for the characterization of direct-write elements opening new horizons for 3D nanomagnetism and magnonics.