论文标题

使用傅立叶变换全息图对磁化矢量场的三维层析成像

Three-dimensional tomographic imaging of the magnetization vector field using Fourier transform holography

论文作者

Martínez, Marisel Di Pietro, Wartelle, Alexis, Martínez, Carlos Herrero, Fettar, Farid, Blondelle, Florent, Motte, Jean-François, Donnelly, Claire, Turnbull, Luke, Ogrin, Feodor, van der Laan, Gerrit, Popescu, Horia, Jaouen, Nicolas, Yakhou-Harris, Flora, Beutier, Guillaume

论文摘要

近年来,从探索新几何形状到扩大对厚样品中存在的磁纹理的知识,对磁性质地的知识扩大,对将2D系统扩展到3D系统的兴趣已经增长,并且出现了新的特征技术,特别是层表成像。在这里,我们提出了一种基于傅立叶变换全息图,这是一种无透镜成像技术,该技术使用样品中的已知参考技术在一个计算的一个步骤中从其衍射模式中检索了感兴趣的对象,从而克服了基于互惠空间的技术固有的相位问题。此外,通过利用相对比而不是吸收对比度,可以研究较厚的样品。我们在5 $ $ $ m直径的圆场视野中获得了800 nm厚的Fe/gd多层的3D全矢量图像,分辨率约为80 nm。 3D图像揭示了类似蠕虫的结构域,磁化强大指向样品表面附近的平面,但落在基板附近的平面内。由于FTH设置非常简单,因此允许修改示例环境。因此,该技术尤其可以启用磁性构型对外部磁场的响应的3D视图。

In recent years, interest in expanding from 2D to 3D systems has grown in the magnetism community, from exploring new geometries to broadening the knowledge on the magnetic textures present in thick samples, and with this arise the need for new characterization techniques, in particular tomographic imaging. Here, we present a new tomographic technique based on Fourier transform holography, a lensless imaging technique that uses a known reference in the sample to retrieve the object of interest from its diffraction pattern in one single step of calculation, overcoming the phase problem inherent to reciprocal-space-based techniques. Moreover, by exploiting the phase contrast instead of the absorption contrast, thicker samples can be investigated. We obtain a 3D full-vectorial image of a 800 nm-thick extended Fe/Gd multilayer in a 5$μ$m-diameter circular field of view with a resolution of approximately 80 nm. The 3D image reveals worm-like domains with magnetization pointing mostly out of plane near the surface of the sample but that falls in-plane near the substrate. Since the FTH setup is fairly simple, it allows modifying the sample environment. Therefore, this technique could enable in particular a 3D view of the magnetic configuration's response to an external magnetic field.

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