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- 2011 Annual Meeting
- Engineering Sciences and Fundamentals
- Development of Intermolecular Potential Models
- (289e) Monte Carlo Calculations of the Virial Coefficients for Development of Potential Models
Here we present two extensions of the Mayer-sampling Monte Carlo approach designed to facilitate development of potential models. The first provides an estimate of the error in the classical virial coefficient for an ab initio potential model relative to that of the quantum-mechanical model it approximates and identifies configurations appropriate for inclusion within the fitting procedure. The second is designed to facilitate path-integral Monte Carlo calculations of quantum contributions to the virial coefficients beyond third order.
[1] G. Garberoglio and A. H. Harvey, "Path-integral calculation of the third virial coefficient of quantum gases at low temperatures," Journal of Chemical Physics, vol. 134, 2011.
[2] A. J. Schultz and D. A. Kofke, "Virial coefficients of model alkanes," Journal of Chemical Physics, vol. 133, 2010.
[3] K. M. Benjamin, et al., "Fourth and Fifth Virial Coefficients of Polarizable Water," Journal of Physical Chemistry B, vol. 113, pp. 7810-7815, 2009.
[4] A. J. Schultz and D. A. Kofke, "Sixth, seventh and eighth virial coefficients of the Lennard-Jones model," Molecular Physics, vol. 107, pp. 2309-2318, 2009.