首页> 美国卫生研究院文献>Journal of Visualized Experiments : JoVE >Fabrication of Magnetic Nanostructures on Silicon Nitride Membranes for Magnetic Vortex Studies Using Transmission Microscopy Techniques
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Fabrication of Magnetic Nanostructures on Silicon Nitride Membranes for Magnetic Vortex Studies Using Transmission Microscopy Techniques

机译:使用透射显微镜技术在氮化硅膜上制备磁性纳米结构用于磁涡旋研究

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摘要

Electron and x-ray magnetic microscopies allow for high-resolution magnetic imaging down to tens of nanometers. However, the samples need to be prepared on transparent membranes which are very fragile and difficult to manipulate. We present processes for the fabrication of samples with magnetic micro- and nanostructures with spin configurations forming magnetic vortices suitable for Lorentz transmission electron microscopy and magnetic transmission x-ray microscopy studies. The samples are prepared on silicon nitride membranes and the fabrication consists of a spin coating, UV and electron-beam lithography, the chemical development of the resist, and the evaporation of the magnetic material followed by a lift-off process forming the final magnetic structures. The samples for the Lorentz transmission electron microscopy consist of magnetic nanodiscs prepared in a single lithography step. The samples for the magnetic x-ray transmission microscopy are used for time-resolved magnetization dynamic experiments, and magnetic nanodiscs are placed on a waveguide which is used for the generation of repeatable magnetic field pulses by passing an electric current through the waveguide. The waveguide is created in an extra lithography step.
机译:电子和X射线磁性显微镜可以进行低至数十纳米的高分辨率磁成像。但是,样品需要在非常易碎且难以操作的透明膜上制备。我们介绍了具有磁性微结构和纳米结构的样品的制备过程,这些结构具有形成旋涡的自旋构型,适用于洛伦兹透射电子显微镜和磁透射X射线显微镜研究。样品在氮化硅膜上制备,制造过程包括旋涂,UV和电子束光刻,抗蚀剂的化学显影以及磁性材料的蒸发,然后进行剥离工艺,形成最终的磁性结构。洛伦兹透射电子显微镜的样品由在单个光刻步骤中制备的磁性纳米光盘组成。用于磁x射线透射显微镜的样品用于时间分辨的磁化动力学实验,并且将磁性纳米光盘放在波导上,该波导用于通过使电流通过波导来产生可重复的磁场脉冲。在额外的光刻步骤中创建波导。

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