论文标题
成像三维纳米级磁化动力学
Imaging three-dimensional nanoscale magnetization dynamics
论文作者
论文摘要
实验绘制批量和图案化三维铁磁体的三维结构和动态的能力对于理解基本的微磁性过程以及研究与技术相关的微型磁体的功能与基本微标志结构的存在和动态有关,例如domain和Vortices。在这里,我们演示了时间分辨的磁层压板,该技术可访问具有纳米级分辨率的复杂三维磁性结构的时间演化。我们在两阶段的大块磁体中成像具有50 nm的侧面空间分辨率的复杂三维磁化状态的动力学,绘制了域壁进液和均匀磁性域的动力学之间的过渡,这归因于整个相边界的磁化状态的变化。具有时间分辨率探测三维磁性结构的能力为对散装和三维图案化纳米磁体动态现象引起的新功能的实验研究铺平了道路。
The ability to experimentally map the three-dimensional structure and dynamics in bulk and patterned three-dimensional ferromagnets is essential both for understanding fundamental micromagnetic processes, as well as for investigating technologically-relevant micromagnets whose functions are connected to the presence and dynamics of fundamental micromagnetic structures, such as domain walls and vortices. Here, we demonstrate time-resolved magnetic laminography, a technique which offers access to the temporal evolution of a complex three-dimensional magnetic structure with nanoscale resolution. We image the dynamics of the complex three-dimensional magnetization state in a two-phase bulk magnet with a lateral spatial resolution of 50 nm, mapping the transition between domain wall precession and the dynamics of a uniform magnetic domain that is attributed to variations in the magnetization state across the phase boundary. The capability to probe three-dimensional magnetic structures with temporal resolution paves the way for the experimental investigation of novel functionalities arising from dynamic phenomena in bulk and three-dimensional patterned nanomagnets.