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Structure and oscillatory multilayer relaxation of the bismuth (100) surface

Authors :
Koroteev, Yuri M.
Chulkov, Eugene V.
Hofmann, Ph.
Pohl, K.
Koroteev, Yuri M.
Chulkov, Eugene V.
Hofmann, Ph.
Pohl, K.
Publication Year :
2010

Abstract

We present a combined experimental and theoretical study of the surface structure of single crystal Bi(100) via scanning tunneling microscopy (STM), low-energy electron diffraction intensity versus energy (LEED-IV) analysis and density functional theory (DFT). We find that the surface is unreconstructed and shows an unusually large oscillatory multilayer relaxation down to the sixth layer. This unexpected behavior will be explained by a novel mechanism related to the deeply penetrating electronic surface states. STM reveals wide (100) terraces, which are separated by two-layer high steps in which the shorter of the two interlayer spacings is terminating this surface, consistent with the LEED structural analysis and DFT.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1103380709
Document Type :
Electronic Resource