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The InSb{111}A,B-(2 [times ] 2) surfaces have been investigated using ultrahigh vacuum high-resolution transmission electron microscopy in the profile-imaging geometry. The multi-slice image simulation for these two surfaces shows that a through-focal series of experimental images strongly supports the In-vacancy buckling model for the InSb(111)A-(2 [times ] 2) surface and the T 4 site Sb...
Scanning tunneling microscopy (STM), reflection high energy electron diffraction (RHEED) and Auger electron spectroscopy (AES) experiments have been performed to study details of a (2 6) reconstructed surface of InSb(111)A. The results obtained are as follows: The (2 6) surface exists purely and solely in the narrow temperature range of 200 and 215°C where Sb atoms are considerably slowly desorbed...
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