Interatomic Potential and Structural Stability

Proceedings of the 15th Taniguchi Symposium, Kashikojima, Japan, October 19-23, 1992

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Last edited by MARC Bot
September 28, 2024 | History

Interatomic Potential and Structural Stability

Proceedings of the 15th Taniguchi Symposium, Kashikojima, Japan, October 19-23, 1992

Structural stability is of fundamental importance in materials science. Up-to-date information on the theoretical aspects of phase stability of materials is contained in this volume. Most of the first-principles calculations are based on the local-density approximation (LDA). In contrast, this volume contains very recent results of "going beyond LDA", such as the density gradient expansion and the quantum Monte-Carlomethod. Following the recently introduced theoretical methods for the calculation of interatomic potentials, forces acting on atoms and total energies such as the Car-Parrinello, the effective-medium and the bond-ordermethod, attempts have been made to develop even more sophisticated methods such as the order-N method in electronic-structure calculations. The present status of these methods and their application to real systems are described. In addition, in order to study the phase stability atfinite temperatures, the microscopic calculations have to be combined with statistical treatment of the systems to describe, e.g. order-disorder transitions on the Si(001) surface or alloy phase diagrams. This book contains examples for this type of calculations.

Publish Date
Language
English
Pages
223

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Book Details


Edition Notes

Published in
Berlin, Heidelberg
Series
Springer Series in Solid-State Sciences -- 114, Springer series in solid-state sciences -- 114.

Classifications

Dewey Decimal Class
620.44
Library of Congress
TA418.7-418.76, TA418.9.T45

The Physical Object

Format
[electronic resource] :
Pagination
1 online resource (x, 223 pages 92 illustrations).
Number of pages
223

Edition Identifiers

Open Library
OL27046295M
ISBN 13
9783642849688
OCLC/WorldCat
858931244

Work Identifiers

Work ID
OL19858387W

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