Comparison between integral equation method and molecular dynamics simulation for three-body forces: Application to supercritical argon
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.1350643
Reference41 articles.
1. Structure of fluid krypton using the integral-equation theory for three-body forces
2. Accurate “Effective” Intermolecular Pair Potentials in Gaseous Argon
3. Three-body dispersion contributions to the thermodynamic properties and effective pair interactions in liquid argon
4. Liquid argon: Monte carlo and molecular dynamics calculations
5. Structure of Supercritical Fluid Krypton at Small Scattering Angle Using Parallel Molecular Dynamics Simulation
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1. Analytical equation of state with three-body forces: Application to noble gases;The Journal of Chemical Physics;2013-11-14
2. Effective potential for three-body forces in fluids;Molecular Physics;2011-03-20
3. Recent Advances in the Field of Integral Equation Theories: Bridge Functions and Applications to Classical Fluids;Advances in Chemical Physics;2008-04-21
4. Molecular Dynamics Simulation of Argon, Krypton, and Xenon Using Two-Body and Three-Body Intermolecular Potentials;Journal of Chemical Theory and Computation;2006-06-21
5. A unified formalism for many-body polarization and dispersion: The quantum Drude model applied to fluid xenon;Chemical Physics Letters;2006-06
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