Scanning Tunneling Microscopy I: General Principles and by Hans-Joachim Güntherodt, Roland Wiesendanger, D. Anselmetti,

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By Hans-Joachim Güntherodt, Roland Wiesendanger, D. Anselmetti, R.J. Behm, P.J.M. van Bentum, S. Chiang, R.J. Hamers, H. van Kempen, Y. Kuk, H. Rohrer, J. Wintterlin

Scanning Tunneling Microscopy I presents a different advent to a unique and engaging procedure that produces appealing pictures of nature on an atomic scale. it's the first of 3 volumes that jointly provide a entire remedy of scanning tunneling microscopy, its different purposes, and its theoretical therapy. during this quantity the reader will discover a special description of the procedure itself and of its functions to metals, semiconductors, layered fabrics, adsorbed molecules and superconductors. as well as the various consultant effects reviewed, huge references to unique paintings may also help to make available the monstrous physique of information already gathered during this field.

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Lett. R. L. Davis: J. Vac. Sci. Technol. 16, 587 (1979) D. Wolf, H. Jagydzinsler, W. Moritz: Surf. Sci. 88, L29 (1979) Y. J. M. Chua: J. Q. Nguyen, Y. J. Silverman: J. de Phys. C. S. Foster, G. F. Willis, W. Unertle: Phys. Rev. Lett. S. M. Foiles: Phys. Rev. Lett. M. Hallmark, S. F. D. I. Wilson: Phys. Rev. Lett. 59, 2879 (1987) Ch. Woll, S. J. H. Lippel: Phys. Rev. B9, 7988 (1989) J. Wintterlin, J. Wiechers, H. Brune, T. Gritsch, H. J. Behm: Phys. Rev. Lett. 62, 59 (1989) Ph. J. D. Miller, Ch.

Diffraction intensity along the <100), calculated from the STM image of Fig. 9 and 3) influence of atomic forces between the tip and sample. However, these large corrugations may well be explained by a new tunneling theory which includes a strong perturbation. 12 shows a to po graph of the Au(111) surface with atomic resolution. 4eV above the Fermi level. 47]. The (100) surfaces of Au and Pt have been known to reveal "(5 x 20)" and "(5 x 12)" reconstructions, respectively. These reconstructions are caused by a close-packed triangular first layer with a higher atomic density than the bulk.

B36, 8173 (1987); Ibid 37, 10395 (1988) R. Landauer: Z. Phys. H. K. Gimzewski: J. A. J. Greene: J. Vac. Sci. Technol. J. M. E. Demuth: Phys. Rev. Lett. S. A. R. S. Swartzentruber: Phys. Rev. Lett. L. I. Chen: J. Vac. Sci. Technol. D. Lang: Phys. Rev. B34, 1164 (1986) P. Heimann, J. Heimanson, H. Miosga, H. Neddermeyer: Phys. Rev. Lett. P. C. Jaklevic, W. Shen: J. Vac. Sci. Technol. B9, 891 (1991) Y. C. K. Robinson: Surf. Sci. K. Robinson: Phys. Rev. Lett. R. L. Davis: J. Vac. Sci. Technol. 16, 587 (1979) D.

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