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Molecular Dynamics Simulations for Transport Coefficients of Liquid Argon : New Approaches
[摘要] The stress and the heat-flux auto-correlation functions in the Green-Kubo formulas for shear viscosity and thermal conductivity have non-decaying long-time tails. This problem can be overcome by improving the statistical accuracy by N (number of particles) times, considering the stress and the heat-flux of the system as properties of each particle. The mean square stress and the heat-flux displacements in the Einstein formulas for shear viscosity and thermal conductivity are non linear functions of time since the quantities in the mean square stress and the heat-flux displacements are not continuous under periodic boundary conditions. An alternative to these quantities is to integrate the stress and the heat-flux with respect to time, but the resulting mean square stress and heat-flux displacements are still not linear versus time. This problem can be also overcome by improving the statistical accuracy. The results for transport coefficients of liquid argon obtained are discussed.
[发布日期]  [发布机构] 
[效力级别]  [学科分类] 化学(综合)
[关键词] MD simulation;Diffusion;Shear viscosity;Thermal conductivity;Liquid argon [时效性] 
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