English

Electronic tuneability of a structurally rigid surface intermetallic and Kondo lattice: CePt$_5$ / Pt(111)

Strongly Correlated Electrons 2015-07-21 v1 Materials Science

Abstract

We present an extensive study of structure, composition, electronic and magnetic properties of Ce--Pt surface intermetallic phases on Pt(111) as a function of their thickness. The sequence of structural phases appearing in low energy electron diffraction (LEED) may invariably be attributed to a single underlying intermetallic atomic lattice. Findings from both microscopic and spectroscopic methods, respectively, prove compatible with CePt5_5 formation when their characteristic probing depth is adequately taken into account. The intermetallic film thickness serves as an effective tuning parameter which brings about characteristic variations of the Cerium valence and related properties. Soft x-ray absorption (XAS) and magnetic circular dichroism (XMCD) prove well suited to trace the changing Ce valence and to assess relevant aspects of Kondo physics in the CePt5_5 surface intermetallic. We find characteristic Kondo scales of the order of 102^2 K and evidence for considerable magnetic Kondo screening of the local Ce 4f4f moments. CePt5_5/Pt(111) and related systems therefore appear to be promising candidates for further studies of low-dimensional Kondo lattices at surfaces.

Keywords

Cite

@article{arxiv.1506.08900,
  title  = {Electronic tuneability of a structurally rigid surface intermetallic and Kondo lattice: CePt$_5$ / Pt(111)},
  author = {C. Praetorius and M. Zinner and A. Köhl and H. Kießling and S. Brück and B. Muenzing and M. Kamp and T. Kachel and F. Choueikani and P. Ohresser and F. Wilhelm and A. Rogalev and K. Fauth},
  journal= {arXiv preprint arXiv:1506.08900},
  year   = {2015}
}

Comments

14 pages, 11 figures