AI Article Synopsis

  • Adsorption of foreign atoms like Cr onto 2D materials can enhance their electronic properties, leading to new effects such as superconductivity and topology.
  • In the study of Cr doping on the α-Au/Si(111) surface, it was found that low levels of Cr (below 0.05 monolayers) cause significant changes in the electronic spectrum by creating flat bands due to the Cr adatoms penetrating the surface layers.
  • Further Cr deposition results in 3D island formation, disrupting surface uniformity, while theoretical calculations reveal how Cr doping influences the electronic band structure, potentially aiding future research in correlated phases and applications in nanoelectronics.

Article Abstract

Adsorption of foreign atoms onto 2D materials can either lead to ordinary electron doping or the emergence of new electronic effects including topology, superconductivity, and quantum anomalous Hall and Kondo states. We have investigated the effect of Cr doping on the electronic structure of the α-Au/Si(111)- surface and its adsorbate-modified family. It has been found that below a critical coverage of ∼0.05 monolayer, Cr adatoms penetrate beneath the Au and topmost Si layers and induce the occupied resonance flat band in the electronic spectrum as revealed by angle-resolved photoelectron spectroscopy. Further deposition of Cr leads to the growth of the 3D islands spoiling the surface homogeneity. Using density functional theory calculations, we have disclosed the effects of Cr doping on the electronic band structure and revealed the nature of hybridization between the Cr-induced magnetic-split band and the Au-induced Rashba-split surface state. We believe that the synthesized 2D phases and electronic effects produced by magnetic atom doping in the ultimate two-dimensional limit will stimulate further investigations related to the highly correlated phases and will find practical applications in nanoelectronic devices.

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Source
http://dx.doi.org/10.1039/d2nr02757gDOI Listing

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