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Direct imaging of magnetic field-driven transitions of skyrmion cluster states in FeGe nanodisks

机译:FeGe纳米盘中由磁场驱动的Skyrmion簇状态跃迁的直接成像

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摘要

Magnetic skyrmion is a nanosized magnetic whirl with nontrivial topology, which is highly relevant for applications on future memory devices. To enable the applications, theoretical efforts have been made to understand the dynamics of individual skyrmions in magnetic nanostructures. However, directly imaging the evolution of highly geometrically confined individual skyrmions is challenging. Here, we report the magnetic field-driven dynamics of individual skyrmions in FeGe nanodisks with diameters on the order of several skyrmion sizes by using Lorentz transmission electron microscopy. In contrast to the conventional skyrmion lattice in bulk, a series of skyrmion cluster states with different geometrical configurations and the field-driven cascading phase transitions are identified at temperatures far below the magnetic transition temperature. Furthermore, a dynamics, namely the intermittent jumps between the neighboring skyrmion cluster states, is found at elevated temperatures, at which the thermal energy competes with the energy barrier between the skyrmion cluster states.
机译:磁天rm是一种具有非平凡拓扑结构的纳米级磁涡流,与未来存储设备上的应用高度相关。为了实现该应用,已经进行了理论上的努力来理解磁性纳米结构中单个天体离子的动力学。然而,直接成像高度几何限制的单个天体的演化是具有挑战性的。在这里,我们通过洛伦兹透射电子显微镜报道了直径在几个天文尺寸的数量级的FeGe纳米盘中单个天文离子的磁场驱动动力学。与散装的传统天蝎子晶格相反,在远低于磁转变温度的温度下,可以识别出一系列具有不同几何构型和场驱动级联相变的天蝎子簇状态。此外,在升高的温度下发现动力学,即在相邻的天蝎子簇状态之间的间歇跳跃,在该温度下热能与天蝎子簇状态之间的能垒竞争。

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