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Article type: Cover
1992 Volume 19 Issue 2 Pages
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Article type: Appendix
1992 Volume 19 Issue 2 Pages
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Article type: Index
1992 Volume 19 Issue 2 Pages
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Article type: Index
1992 Volume 19 Issue 2 Pages
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Ichiro Sunagawa
Article type: Article
1992 Volume 19 Issue 2 Pages
151-
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Article type: Appendix
1992 Volume 19 Issue 2 Pages
152-
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Kazumi Nishioka
Article type: Article
1992 Volume 19 Issue 2 Pages
153-
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Makio Uwaha
Article type: Article
1992 Volume 19 Issue 2 Pages
154-160
Published: September 25, 1992
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Recent development in the study of statistical mechanics of steps and related crystal growth theories are reviewed. Topics include morphology and fluctuations of steps in equilibrium and in growth, instabilities in surface diffusion fields, and relation between growth mechanisms and growth laws.
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Noriko Akutsu, Yasuhiro Akursu, Takao Yamamoto
Article type: Article
1992 Volume 19 Issue 2 Pages
161-168
Published: September 25, 1992
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By a random walk method with imaginary weight, step tension and equilibrium crystal shape (ECS) are calculated for stoichiometrically binary systems with hexagonal ZnS-type crystal structure. A pencil-like three-dimensional ECS is obtained. The habit change of the ECS with temperature and partial vapor pressure is studied.
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Takao Yamamoto, Noriko Akutsu, Yasuhiro Akutsu
Article type: Article
1992 Volume 19 Issue 2 Pages
169-178
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The relaxation process of the crystal shape near the facet is studied by means of a time-dependent Ginzburg-Landau equation. During the relaxation process, the surface gradient p behaves as p〜(⊿x)^<l/2> (⊿x: distance from the facet edge) off the facet edge and p〜⊿x quite near the facet edge. This result gives a possible explanation for the discrepancy between theory and experiment on the facet edge critical behavior.
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Koh Wada, Takashi Uchida
Article type: Article
1992 Volume 19 Issue 2 Pages
179-186
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The growth kinetics by molecular-beam epitaxy (MBE) is studied on the stepped surface by means of a kinetic equation describing the deposition and diffusion of atoms on the basis of the SOS (solid-on-solid) model. The kinetic equation is derived by using site-dependent point approximation of the path probability method. It is shown that the growth mode changes from the layer-by-layer mode on the terraces to the step propagation mode as the temperature is increased. The results agree qualitatively well with reflection high-energy electron diffraction (RHEED) measurements on GaAs (001) with miscut angle.
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Humihiko Takei
Article type: Article
1992 Volume 19 Issue 2 Pages
187-193
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[in Japanese]
Article type: Article
1992 Volume 19 Issue 2 Pages
194-
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[in Japanese]
Article type: Article
1992 Volume 19 Issue 2 Pages
194-
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Article type: Appendix
1992 Volume 19 Issue 2 Pages
195-
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Article type: Appendix
1992 Volume 19 Issue 2 Pages
195-196
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Article type: Appendix
1992 Volume 19 Issue 2 Pages
196-199
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Article type: Appendix
1992 Volume 19 Issue 2 Pages
199-
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Article type: Appendix
1992 Volume 19 Issue 2 Pages
199-200
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Article type: Appendix
1992 Volume 19 Issue 2 Pages
200-
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Article type: Appendix
1992 Volume 19 Issue 2 Pages
200-201
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Article type: Appendix
1992 Volume 19 Issue 2 Pages
201-
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Article type: Appendix
1992 Volume 19 Issue 2 Pages
202-203
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Article type: Appendix
1992 Volume 19 Issue 2 Pages
App2-
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Article type: Cover
1992 Volume 19 Issue 2 Pages
Cover2-
Published: September 25, 1992
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