论文标题
抗铁磁fe $ _2 $的磁化磁化标准成像
Angstrom-Scale Imaging of Magnetization in Antiferromagnetic Fe$_2$As via 4D-STEM
论文作者
论文摘要
我们演示了计算工具和实验4D型方法的组合,以与6 Angstrom空间分辨率一样,在反铁磁Fe $ _2 $中成像局部磁矩。我们的技术利用磁衍射峰(在抗铁磁材料中常见)创建直接可视化磁性晶格的成像模式。使用这种方法,我们表明质量分析可以确定垂直于电子束路径的平面中的局部磁化成分。此外,我们开发了磁系统,这是一种量子机械电子散射模拟代码,以模拟磁性材料的Angstrom尺度探针的电子散射。使用这些工具,我们确定了将弱磁信号与与静电电势的易磁尺度探针相互作用更强的相互作用的最佳实验条件。我们的技术对于在薄膜,界面和防铁磁材料的薄膜,界面和域边界等系统中的局部磁顺序应该很有用,这些材料很难用现有方法探测。
We demonstrate a combination of computational tools and experimental 4D-STEM methods to image the local magnetic moment in antiferromagnetic Fe$_2$As with 6 angstrom spatial resolution. Our techniques utilize magnetic diffraction peaks, common in antiferromagnetic materials, to create imaging modes that directly visualize the magnetic lattice. Using this approach, we show that center-of-mass analysis can determine the local magnetization component in the plane perpendicular to the path of the electron beam. Moreover, we develop Magnstem, a quantum mechanical electron scattering simulation code, to model electron scattering of an angstrom-scale probe from magnetic materials. Using these tools, we identify optimal experimental conditions for separating weak magnetic signals from the much stronger interactions of an angstrom-scale probe with electrostatic potentials. Our techniques should be useful for characterizing the local magnetic order in systems such in thin films, interfaces, and domain boundaries of antiferromagnetic materials, which are difficult to probe with existing methods.