Free Access
Issue
Microsc. Microanal. Microstruct.
Volume 5, Number 4-6, August / October / December 1994
Page(s) 519 - 533
DOI https://doi.org/10.1051/mmm:0199400504-6051900
References of Microsc. Microanal. Microstruct. 5 519-533
  • Sedd G.M. and Russell RE., "The scanning tunneling microscope as a tool for nanofabrication" Nanotechnology 4 (1990) 67-80.
  • Wiesendanger R., "Contributions of scanning probe microscopy and spectroscopy to the investigation and fabrication of nanometer-scale structures", J. Vac. Sci. Techol. B12 (1994) 515-529. [CrossRef]
  • Emch R., Nogami J., Dovek M.M., Lang C.A., Quate C.F., "Characterization of gold surface for use as substrates in scanning tunneling microscopy studies", J. Appl. Phys.65 (1989) 79-84. [CrossRef]
  • Guo C.X., Thomson D.J., "Material transfer between metallic tips and surface in the STM", Ultramicroscopy 42-44 (1992) 1452-1458. [CrossRef]
  • Hasegawa Y., Avouris Ph., "Manipulation of the reconstruction of the Au(111) surface with the STM" Science 258 (1992) 1763-1765. [CrossRef] [PubMed]
  • Li Y.Z., Vazquez L., Piner R., Andres R.P., Reifenberger R., "Writing nanometer-scale symbols in gold using the scanning tunneling microscope", Appl. Phys. Lett. 54 (1989) 1424-1426, and Appl. Phys. Lett 55(1989) 2366-2367.
  • Mamin H.J., Guethner P.H., Rugar D., "Atomic emission from a gold scanning tunneling microscope tip" Phys. Rev. Lett. 65 (1990) 2418-2420. [CrossRef] [PubMed]
  • Peale D.R., Cooper B.H., "Adsorbate-promoted mass flow on the gold (111) surface observed by scanning tunneling microscopy" J. Vac. Sci. Technol. A10 (1992) 2210-2215.
  • Schneir J. and Hansma P.K., "Scanning tunneling microscopy and lithography of solid surface covered with nonpolar liquids", Langmuir 3 (1987) 1025-1027. [CrossRef]
  • Roberts C.J., Hoffmann-Millack B., Steer W.S., "Observation of a gold surface using scanning tunneling microscopy in an inert atmosphere and the effects of water adsorption" J. Vac. Sci. Technol. B9 (1991) 841-844.
  • Thundat T., Zheng X.Y., Chen G.Y., Warmack R.J., "Role of relative humidity in atomic force microscopy imaging", Surf. Sci. Lett. 294 (1993) L939-L943. [CrossRef]
  • Rabe J.P., Buchholz S., Ritcey A.M., "Reactive graphite etch and the structure of an adsorbed organic monolayer-a scanning tunneling microscopy study" J. Vac. Sci. Technol. A8 (1990) 679-683.
  • Mamin H.J., Chiang S., Birk P.H., Guethner P.H., Rugar D., "Gold deposition from a scanning tunneling microscope tip", J. Vac. Sci. Technol. B9 (1991) 1398-1402.
  • Emch R., Nogami J., Dovek M.M., Lang C.A., Quate C.F., "Characterization of gold surface for use as substrates in scanning tunneling microscopy studies", J. Appl. Phys . 65 (1989) 79-84. [CrossRef]
  • Jaklevic R.C. and Elie L., "Scanning tunneling microscope observation of surface diffusion on an atomic scale : Au on Au(111)", Phys. Rev. Lett. 60 (1988) 120-123. [CrossRef] [PubMed]
  • Mo Y.W., "Direct determination of surface diffusion by displacement measurement with scanning tunneling microscopy", Phys. Rev. Lett. 71 (1993) 2923-2926. [CrossRef] [PubMed]
  • Lebreton C. et Wang Z.Z., à paraitre. Récemment, une étude préliminaire, en utilisant le microscope à force atomique en tapping mode, confirme les résultats obtenus en STM sur la création des nano-structures.