中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Molecular dynamics simulations for melting temperatures of CaF2

文献类型:期刊论文

作者Z. J. Liu ; X. L. Cheng ; X. L. Chen ; X. R. Chen ; J. H. Qi ; H. Z. Guo
刊名Chinese Journal of Chemical Physics
出版日期2005
卷号18期号:2页码:193-196
关键词melting temperature molecular dynamics simulation equation of state high pressure high-pressures lower mantle mgo nacl perovskite crystals mgsio3 curve lif
ISSN号1003-7713
中文摘要The molecular dynamics method has been applied to simulate the melting temperatures of CaF2 at elevated temperature and high pressure and to calculate the P ∼ V equation of state of CaF2 up to 100 GPa at 300 K. The interatomic potential was taken to be the sum of pairwise additive Coulomb, van der Waals attractions, and repulsive interactions. In addition, the shell model was used in molecular dynamics simulation. The pressure dependence of the melting temperature of CaF2 was predicted up to 4 GPa. However, in order to account for the superheating melting of the molecular dynamic simulation, the simulated melting temperatures of CaF2 were corrected by the modem theory of melting. Consequently, the melting temperatures of CaF2 were accurately obtained at elevated temperature and high pressure. Therefore, it is shown that shell-model molecular dynamics simulation at constant pressure indeed provides a useful tool for studying the melting temperatures of other materials under high pressures.
原文出处://WOS:000228910100010
公开日期2012-05-17
源URL[http://ir.imr.ac.cn/handle/321006/40016]  
专题金属研究所_中国科学院金属研究所
推荐引用方式
GB/T 7714
Z. J. Liu,X. L. Cheng,X. L. Chen,et al. Molecular dynamics simulations for melting temperatures of CaF2[J]. Chinese Journal of Chemical Physics,2005,18(2):193-196.
APA Z. J. Liu,X. L. Cheng,X. L. Chen,X. R. Chen,J. H. Qi,&H. Z. Guo.(2005).Molecular dynamics simulations for melting temperatures of CaF2.Chinese Journal of Chemical Physics,18(2),193-196.
MLA Z. J. Liu,et al."Molecular dynamics simulations for melting temperatures of CaF2".Chinese Journal of Chemical Physics 18.2(2005):193-196.

入库方式: OAI收割

来源:金属研究所

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