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利用扫描透射X射线显微镜观测磁涡旋结构
引用本文:孙璐,火炎,周超,梁建辉,张祥志,许子健,王勇,吴义政.利用扫描透射X射线显微镜观测磁涡旋结构[J].物理学报,2015,64(19):197502-197502.
作者姓名:孙璐  火炎  周超  梁建辉  张祥志  许子健  王勇  吴义政
作者单位:1. 复旦大学物理系, 上海 200433; 2. 中国科学院上海应用物理研究所, 上海 201204
基金项目:国家重点基础研究发展计划(批准号: 2015CB921401)和国家自然科学基金(批准号: 11474066)资助的课题.
摘    要:利用上海光源软X射线谱学显微光束线站(STXM)并结合X射线的磁圆二色效应, 我们对方形、圆形和三角形的Ni80Fe20薄膜微结构中的磁涡旋结构进行了定量实验观测, 并利用同步辐射光源的元素分辨特性, 分别在Fe和Ni的L3吸收边对涡旋磁结构进行了观测. 我们还对磁涡旋中磁矩的分布进行了定量分析, 发现实验结果与微磁学模拟结果完全符合.

关 键 词:磁涡旋  磁圆二色性  同步辐射  微磁学模拟
收稿时间:2015-04-15

STXM observation and quantitative study of magnetic vortex structure
Sun Lu,Huo Yan,Zhou Chao,Liang Jian-Hui,Zhang Xiang-Zhi,Xu Zi-Jian,Wang Yong,Wu Yi-Zheng.STXM observation and quantitative study of magnetic vortex structure[J].Acta Physica Sinica,2015,64(19):197502-197502.
Authors:Sun Lu  Huo Yan  Zhou Chao  Liang Jian-Hui  Zhang Xiang-Zhi  Xu Zi-Jian  Wang Yong  Wu Yi-Zheng
Institution:1. Department of Physics, Fudan University, Shanghai 200433, China; 2. Shanghai Institute of Applied Physics, Chinese Academy of Sciences, Shanghai 201204, China
Abstract:Magnetic recording has now played an important role in the development of non-volatile information storage technologies, so it becomes essential to quantitatively understand the magnetization distribution in magnetic microstructures. In ferromagnetic disks, squares and triangles with submicron sizes, it is energetically favorable for the magnetization to form a closed in-plane vortex and a perpendicular vortex core at the center. This vortex magnetic structure is a new candidate for future magnetic memory device because both the vortex chirality and the core polarity can be manipulated by applying an external magnetic field or a spin-polarized current. Further development of vortex-based memory devices requires quantitative measurement of vortex domain structures, which is still lacking.In this paper, magnetization configuration in a vortex structure has been quantitatively studied by scanning transmission X-ray microscope (STXM) utilizing X-ray magnetic circular dichroism (XMCD) effect in Shanghai Synchrotron Radiation Facility. Samples have been fabricated on the 100 nm silicon-nitride membranes. The patterns are first transferred to PMMA photoresist using e-beam lithography, then a 50 nm thick Ni80Fe20 film is deposited by e-beam evaporation. Magnetic vortex configurations are characterized with the X-ray energy at Fe L3 absorption edge and Ni L3 absorption edge, respectively. The image taken at Fe edge shows greater contrast than that at Ni edge. Experimental results indicate that the magnetic vortex state remains stable in permalloy circle, square and triangle structures with diameters from 2 to 5 μm. The STXM images indicate that the magnetization in circular geometry changes continuously along the concentric circles without clear domain boundaries. In contrast, magnetization in square geometry consists of four distinct domains with clear diagonal domain boundaries. Similarly, three domains can be observed in triangle geometry. In order to quantify the in-plane magnetization configuration in magnetic vortices, we also use micromagnetic simulation to calculate the magnetization distributions of these three geometries. By extracting Mx along the circular profiles in both experimental and simulated vortex images, we find that the experimental magnetic profiles in the STXM images are consistent with the simulation data quantitatively. These magnetic structures are also studied by magnetic force microscopy (MFM). Since MFM is only sensitive to the dipolar magnetic field around the domain boundary, the MFM images show different configurations from the STXM images.
Keywords:magnetic vortex  XMCD  synchrotron radiation  micromagnetic simulation
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