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Visualization of steps and surface reconstructions in Helium Ion Microscopy with atomic precision

Hlawacek, G.; Jankovski, M.; Wormeester, H.; van Gastel, R.; Zandvliet, H. J. W.; Poelsema, B.

Abstract

Helium Ion Microscopy is known for its surface sensitivity and high lateral resolution. Here, we present results of a Helium Ion Microscopy based investigation of a surface confined alloy of Ag on Pt(111). Based on a change of the work function of 25 meV across the atomically flat terraces we can distinguish Pt rich from Pt poor areas and visualize the single atomic layer high steps between the terraces. Furthermore, dechanneling contrast has been utilized to measure the periodicity of the hcp/fcc pattern formed in the 2 ML thick Ag alloy layer. A periodicity of 6.65 nm along the $\langle\overline{11}2\rangle$ surface direction has been measured. In terms of crystallography a hcp domain is obtained through a lateral displacement of a part of the outermost layer by $1/\sqrt{3}$ of a nearest neighbour spacing along $\langle\overline{11}2\rangle$. The findings are perfectly in line with results obtained with Low Energy Electron Microscopy and Phase Contrast Atomic Force Microscopy.

Keywords: Helium Ion Microscopy; Channeling; Surface alloy; Step contrast; Low Energy Electron Microscopy

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Permalink: https://www.hzdr.de/publications/Publ-21732