首页> 美国政府科技报告 >Theoretical Model of Scanning Tunneling Microscopy: Application to the Graphite(0001) and Au(111) Surfaces. (Reannouncement with New Availability Information)
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Theoretical Model of Scanning Tunneling Microscopy: Application to the Graphite(0001) and Au(111) Surfaces. (Reannouncement with New Availability Information)

机译:扫描隧道显微镜的理论模型:石墨(0001)和au(111)表面的应用。 (重新公布新的可用性信息)

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摘要

An expression for the scanning tunneling microscopy (STM) current between the tipand sample is presented using first-order perturbation theory for a two-Hamiltonian formalism ('reactants' and 'products'). The calculated STM current depends on the square of the sample-tip matrix elements, averaged over a selection of random points in wave vector space. In the limit of low voltage and temperature, this averaging is over the Fermi surface of the sample. The model is applied to the graphite (0001) and Au(111) surfaces using a simple model (chain) of a tungsten tip and the tight-binding approximation. Comparisons with experiments and with the result for graphite obtained by Tersoff and Lang using a molybdenum tip are given. The theory is applied elsewhere to STM of adsorbates.

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