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Comparative Study of Graphite and Intercalated Graphite by Tunneling Microscopy
Abstract Scanning tunneling microscopy (STM) has been established as an important surface sensitive technique both in the domain of atomic imaging [1] and surface electronic spectroscopy [2]. The interpretation of the images relies mostly on the theory of Tersoff and Hamman [3], who have demonstrated that, in the limit of small applied bias and for a spherical tip, the tunneling current is proportionnal to the local density of states of the sample at the Fermi level. To relate this quantity with the positions of the atoms of the surface is a general problem in interpreting STM images [4].
Comparative Study of Graphite and Intercalated Graphite by Tunneling Microscopy
Abstract Scanning tunneling microscopy (STM) has been established as an important surface sensitive technique both in the domain of atomic imaging [1] and surface electronic spectroscopy [2]. The interpretation of the images relies mostly on the theory of Tersoff and Hamman [3], who have demonstrated that, in the limit of small applied bias and for a spherical tip, the tunneling current is proportionnal to the local density of states of the sample at the Fermi level. To relate this quantity with the positions of the atoms of the surface is a general problem in interpreting STM images [4].
Comparative Study of Graphite and Intercalated Graphite by Tunneling Microscopy
Gauthier, S. (author) / Rousset, S. (author) / Klein, J. (author) / Sacks, W. (author) / Belin, M. (author)
1988-01-01
4 pages
Article/Chapter (Book)
Electronic Resource
English
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