Voigt Multiscale Modeling in Epitaxial Growth

Multiscale Modeling in Epitaxial Growth

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Beschreibung

Epitaxy is a very active area of theoretical research since several years. It is experimentally well-explored and technologically relevant for thin film growth. Recently powerful numerical techniques in combination with a deep understanding of the physical and chemical phenomena during the growth process offer the possibility to link atomistic effects at the surface to the macroscopic morphology of the film. The goal of this book is to summarize recent developments in this field, with emphasis on multiscale approaches and numerical methods. It covers atomistic, step-flow, and continuum models and provides a compact overview of these approaches. It also serves as an introduction into this highly active interdisciplinary field of research for applied mathematicians, theoretical physicists and computational materials scientists.


Proceedings of an Oberwolfach Conference, suggested by K.-H. Hoffmann First available overview of highly active research field in modeling epitaxial growth Introduction given to kinetic Monte Carlo, step flow and continuum methods State-of-the-art in multiscale simulations in epitaxial growth Can be used as an introduction for graduate students in applied math, theoretical physics and computational materials science

Autor*in

Axel Voigt

Themen in »Multiscale Modeling in Epitaxial Growth«

Finite differential equation epitaxial growth equation finite element method multiscale analysis numerical analysis numerical methods partial differential equations

Stimmen zu »Multiscale Modeling in Epitaxial Growth«

Details

ISBN: 9783764373436
Verlag: Springer Basel
Erscheinung: 30.03.2006

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