...
首页> 外文期刊>Small >Quantitative Imaging of the Magnetic Configuration of Modulated Nanostructures by Electron Holography
【24h】

Quantitative Imaging of the Magnetic Configuration of Modulated Nanostructures by Electron Holography

机译:电子全息术对调制纳米结构的磁性构型的定量成像

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

By means of off-axis electron holography the local distribution of the magnetic induction within and around a poly-crystalline Permalloy (Ni 81 Fe 19) thin film is studied. In addition the stray field above the sample is measured by magnetic force microscopy on a larger area. The film is deposited on a periodically nanostructured (rippled) Si substrate, which was formed by Xe~+ ion beam erosion. This introduces the periodical ripple shape to the Permalloy film. The created ripple morphology is expected to modify the magnetization distribution within the Permalloy and to induce dipolar stray fields. These stray fields play an important role in spinwave dynamics of periodic nanostructures like magnonic crystals. Micromagnetic simulations estimate those stray fields in the order of only 10 mT. Consequently, their experimental determination at nanometer spatial resolution is highly demanding and requires advanced acquisition and reconstruction techniques such as electron holography. The reconstructed magnetic phase images show the magnetized thin film, in which the magnetization direction follows mainly the given morphology. Furthermore, a closer look to the Permalloy/ carbon interface reveals stray fields at the detection limit of the method in the order of 10 mT, which is in qualitative agreement with the micromagnetic simulations.
机译:通过离轴电子全息图,研究了多晶坡莫合金(Ni 81 Fe 19)薄膜内部和周围的磁感应局部分布。另外,样品上方的杂散场通过磁力显微镜在更大的区域上测量。该膜沉积在周期性的纳米结构(波纹状)Si衬底上,该衬底是通过Xe〜+离子束腐蚀形成的。这将周期性波纹形状引入坡莫合金膜。预期产生的波纹形态会改变坡莫合金内的磁化分布并引起偶极杂散场。这些杂散场在周期性的纳米结构(如强磁晶体)的自旋波动力学中起重要作用。微磁仿真估计这些杂散场仅为10 mT。因此,对它们在纳米空间分辨率下的实验确定提出了很高的要求,并且需要先进的采集和重建技术,例如电子全息技术。重建的磁相图像显示了被磁化的薄膜,其中磁化方向主要遵循给定的形态。此外,对坡莫合金/碳界面的仔细观察显示,在该方法的检测极限处杂散场约为10 mT,这与微磁模拟在质量上是一致的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号