Real-space Wigner-Seitz Cells Imaging of Potassium on Graphite via Elastic Atomic Manipulation
Yin, F., Koskinen, P., Kulju, S., Akola, J., & Palmer, R. E. (2015). Real-space Wigner-Seitz Cells Imaging of Potassium on Graphite via Elastic Atomic Manipulation. Scientific Reports, 5, Article 8276. https://doi.org/10.1038/srep08276
Julkaistu sarjassa
Scientific ReportsPäivämäärä
2015Tekijänoikeudet
© the Authors, 2015.
Atomic manipulation in the scanning tunnelling microscopy, conventionally a tool to build nanostructures
one atom at a time, is here employed to enable the atomic-scale imaging of a model low-dimensional system.
Specifically, we use low-temperature STM to investigate an ultra thin film (4 atomic layers) of potassium
created by epitaxial growth on a graphite substrate. The STM images display an unexpected honeycomb
feature, which corresponds to a real-space visualization of the Wigner-Seitz cells of the close-packed surface
K atoms. Density functional simulations indicate that this behaviour arises from the elastic, tip-induced
vertical manipulation of potassium atoms during imaging, i.e. elastic atomic manipulation, and reflects the
ultrasoft properties of the surface under strain. The method may be generally applicable to other soft e.g.
molecular or biomolecular systems.
Julkaisija
Nature Publishing GroupISSN Hae Julkaisufoorumista
2045-2322Julkaisu tutkimustietojärjestelmässä
https://converis.jyu.fi/converis/portal/detail/Publication/24589205
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