Fusion of the extended modified liquid drop model for nucleation and dynamical nucleation theory
We present a new phenomenological approach to nucleation, based on the combination of the "extended modified liquid drop" model and dynamical nucleation theory. The new model proposes a new cluster definition, which properly includes the effect of fluctuations, and it is consistent both th...
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Published in | Physical review letters Vol. 93; no. 16; p. 165701 |
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Main Authors | , |
Format | Journal Article |
Language | English |
Published |
United States
15.10.2004
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Abstract | We present a new phenomenological approach to nucleation, based on the combination of the "extended modified liquid drop" model and dynamical nucleation theory. The new model proposes a new cluster definition, which properly includes the effect of fluctuations, and it is consistent both thermodynamically and kinetically. The model is able to predict successfully the free energy of formation of the critical nucleus, using only macroscopic thermodynamic properties. It also accounts for the spinodal and provides excellent agreement with the result of recent simulations. |
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AbstractList | We present a new phenomenological approach to nucleation, based on the combination of the "extended modified liquid drop" model and dynamical nucleation theory. The new model proposes a new cluster definition, which properly includes the effect of fluctuations, and it is consistent both thermodynamically and kinetically. The model is able to predict successfully the free energy of formation of the critical nucleus, using only macroscopic thermodynamic properties. It also accounts for the spinodal and provides excellent agreement with the result of recent simulations. |
Author | Reguera, D Reiss, H |
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BackLink | https://www.ncbi.nlm.nih.gov/pubmed/15525003$$D View this record in MEDLINE/PubMed |
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