Theoretical and numerical studies of nucleation kinetics
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概要
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この論文は国立情報学研究所の電子図書館事業により電子化されました。Reconsideration on the concept of critical nucleus for single component systems leads to the result that the size n_k of a kinetic critical nucleus for which the probabilities of its decay and growth balance is not equal to the size n^* of the thermodynamic one for which the reversible work of nucleus formation takes the maximum value. n_k is in general smaller than n^*, and there exist two values for n_k, the larger is kinetically unstable but the smaller is stable. The difference between n^* and the larger n_k increases but the difference between the two values of n_k decreases with supersaturation and or temperature, and at the critical state two values of n_k coincide and it diminishes to 8/27 of n^* for three dimensional homogeneous nucleation and to 1/4 of n^* for two dimensional disc nucleation on a substrate. Beyond this critical state n_k does not exist and for a nucleus with any size the probabilty of growth is higher than that of decay. The height of the nucleation barrier, i.e., the reversible work of critical nucleus formation, is found to be the main parameter quantitatively controlling the distinction between n^* and n_k. It is shown that when the distinction between the two kinds of the critical nuclei is significant, the attachment and the detachment rates of monomers do not differ appreciably.
- 物性研究刊行会の論文
- 1999-06-20
著者
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Maksimov Igor
Faculty Of Applied Physics And Microelectronics Nizhny Novgorod University
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Nishioka K
Department Of Optical Science And Technology The University Of Tokushima
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Nishioka Kazumi
Department Of Precision Mechanics Tokushima University
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Maksimov I
ニズニー・ノブゴロド大学物理学部理論物理学科
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Sanada Masaaki
Course in Materials Science and Engineering, Graduate School of The University of Tokushima
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Sanada Masaaki
Course In Materials Science And Engineering Graduate School Of The University Of Tokushima
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西岡 一水
Department of Optical Science and Technology, The University of Tokushima
関連論文
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- Theoretical and numerical studies of nucleation kinetics
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- Numerical Simulation of the Kinetic Critical Nucleus
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