Guang Yao, Bykova Iuliia, Liu Yizhou, Yu Guoqiang, Goering Eberhard, Weigand Markus, Gräfe Joachim, Kim Se Kwon, Zhang Junwei, Zhang Hong, Yan Zhengren, Wan Caihua, Feng Jiafeng, Wang Xiao, Guo Chenyang, Wei Hongxiang, Peng Yong, Tserkovnyak Yaroslav, Han Xiufeng, Schütz Gisela
Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing, 100190, China.
Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing, 100049, China.
Nat Commun. 2020 Feb 19;11(1):949. doi: 10.1038/s41467-020-14769-0.
Skyrmions, magnetic textures with topological stability, hold promises for high-density and energy-efficient information storage devices owing to their small size and low driving-current density. Precise creation of a single nanoscale skyrmion is a prerequisite to further understand the skyrmion physics and tailor skyrmion-based applications. Here, we demonstrate the creation of individual skyrmions at zero-field in an exchange-biased magnetic multilayer with exposure to soft X-rays. In particular, a single skyrmion with 100-nm size can be created at the desired position using a focused X-ray spot of sub-50-nm size. This single skyrmion creation is driven by the X-ray-induced modification of the antiferromagnetic order and the corresponding exchange bias. Furthermore, artificial skyrmion lattices with various arrangements can be patterned using X-ray. These results demonstrate the potential of accurate optical control of single skyrmion at sub-100 nm scale. We envision that X-ray could serve as a versatile tool for local manipulation of magnetic orders.
斯格明子是具有拓扑稳定性的磁性纹理,由于其尺寸小和驱动电流密度低,有望用于高密度和节能信息存储设备。精确创建单个纳米级斯格明子是进一步理解斯格明子物理学并定制基于斯格明子的应用的先决条件。在此,我们展示了在零磁场下,通过对交换偏置磁性多层膜施加软X射线来创建单个斯格明子。特别是,可以使用尺寸小于50纳米的聚焦X射线光斑在所需位置创建尺寸为100纳米的单个斯格明子。这种单个斯格明子的创建是由X射线诱导的反铁磁序改变和相应的交换偏置驱动的。此外,可以使用X射线对具有各种排列的人工斯格明子晶格进行图案化。这些结果证明了在亚100纳米尺度上对单个斯格明子进行精确光学控制的潜力。我们设想X射线可以作为一种用于局部操纵磁序的通用工具。