Splitting the Fast and Slow Motions in Molecular Dynamics Simulations Based on the Change of Cold Potential Well Bottom


Autoria(s): Zheng ZJ; 白以龙
Data(s)

2010

Resumo

The atomic motion is coupled by the fast and slow components due to the high frequency vibration of atoms and the low frequency deformation of atomic lattice, respectively. A two-step approximate method was presented to determine the atomic slow motion. The first step is based on the change of the location of the cold potential well bottom and the second step is based on the average of the appropriate slow velocities of the surrounding atoms. The simple tensions of one-dimensional atoms and two-dimensional atoms were performed with the full molecular dynamics simulations. The conjugate gradient method was employed to determine the corresponding location of cold potential well bottom. Results show that our two-step approximate method is appropriate to determine the atomic slow motion under the low strain rate loading. This splitting method may be helpful to develop more efficient molecular modeling methods and simulations pertinent to realistic loading conditions of materials.

Identificador

http://dspace.imech.ac.cn/handle/311007/44312

http://www.irgrid.ac.cn/handle/1471x/124683

Idioma(s)

英语

Fonte

ISCM II AND EPMESC XII, PTS 1 AND 2. 2nd International Symposium on Computational Mechanics, Hong Kong, PEOPLES R CHINA. NOV 30-DEC 03, 2009, pp.917-922.

Palavras-Chave #Molecular Simulations #Multiple-Time Scale Problem #Cold Potential Well
Tipo

会议论文