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Patterning Surfaces by Self-Organized Growth
Abstract Much effort has been devoted to create semiconductor and metal nanostructures at surfaces. Their controlled fabrication, in particular the creation of lateral order, however, remains an experimental challenge. In this contribution we discuss the fabrication of nanostructures via self-organized growth at surfaces. Advantages and limitations of diffusion controlled molecular beam epitaxy are discussed and novel routes for the fabrication of ordered nanostructures are presented.
Patterning Surfaces by Self-Organized Growth
Abstract Much effort has been devoted to create semiconductor and metal nanostructures at surfaces. Their controlled fabrication, in particular the creation of lateral order, however, remains an experimental challenge. In this contribution we discuss the fabrication of nanostructures via self-organized growth at surfaces. Advantages and limitations of diffusion controlled molecular beam epitaxy are discussed and novel routes for the fabrication of ordered nanostructures are presented.
Patterning Surfaces by Self-Organized Growth
Kern, Klaus (Autor:in)
01.01.2002
12 pages
Aufsatz/Kapitel (Buch)
Elektronische Ressource
Englisch
Scanning Tunneling Microscope , Scanning Tunneling Microscope Image , Dislocation Network , Adsorption Geometry , Island Density Physics , Physics, general , Electronics and Microelectronics, Instrumentation , Surfaces and Interfaces, Thin Films , Characterization and Evaluation of Materials , Physical Chemistry , Condensed Matter Physics
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