论文标题

Ångstrom深度分辨率具有化学特异性在液体蒸气界面

Ångstrom depth resolution with chemical specificity at the liquid-vapor interface

论文作者

Dupuy, R., Filser, J., Richter, C., Buttersack, T., Trinter, F., Gholami, S., Seidel, R., Nicolas, C., Bozek, J., Egger, D., Oberhofer, H., Thürmer, S., Hergenhahn, U., Reuter, K., Winter, B., Bluhm, H.

论文摘要

在许多科学和技术领域,跨界面的深度剖面的确定至关重要。光发射光谱原则上非常适合此目的,但是由于缺乏对液体中电子散射过程的了解而阻碍了液体蒸气界面进行研究的定量实施。然而,先前的研究表明,核心级光电子角分布(PAD)会因深度依赖性弹性电子散射而改变,因此可以揭示有关跨界面物种深度分布的信息。在这里,我们进一步探讨了这一概念,并表明垫板的各向异性参数与沿表面正常的原子的平均距离线性缩放。这种行为可以在低碰撞数字制度中解释。我们还表明,可以在相同的长度尺度上比较不同原子种类的结果。我们证明,可以通过这种方法清楚地区分沿表面正常的约1〜Å〜的原子,从而实现了极佳的深度分辨率。

The determination of depth profiles across interfaces is of primary importance in many scientific and technological areas. Photoemission spectroscopy is in principle well suited for this purpose, yet a quantitative implementation for investigations of liquid-vapor interfaces is hindered by the lack of understanding of electron-scattering processes in liquids. Previous studies have shown, however, that core-level photoelectron angular distributions (PADs) are altered by depth-dependent elastic electron scattering and can, thus, reveal information on the depth distribution of species across the interface. Here, we explore this concept further and show that the anisotropy parameter characterizing the PAD scales linearly with the average distance of atoms along the surface normal. This behavior can be accounted for in the low-collision-number regime. We also show that results for different atomic species can be compared on the same length scale. We demonstrate that atoms separated by about 1~Å~along the surface normal can be clearly distinguished with this method, achieving excellent depth resolution.

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