Structure and thermodynamics of two dimensional Yukawa liquids
arXiv:2104.04811 · doi:10.1103/PhysRevE.103.063205
Abstract
The thermodynamic and structural properties of two dimensional dense Yukawa liquids are studied with molecular dynamics simulations. The "exact" thermodynamic properties are simultaneously employed in an advanced scheme for the determination of an equation of state that shows an unprecedented level of accuracy for the internal energy, pressure and isothermal compressibility. The "exact" structural properties are utilized to formulate a novel empirical correction to the hypernetted-chain approach that leads to a very high accuracy level in terms of static correlations and thermodynamics.
13 pages, 7 figures, 13 page supplementary material
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Cited by in corpus (5)
- Freezing density scaling of fluid transport properties: Application to liquefied noble gases
- Bridge functions of classical one-component plasmas
- Machine learning in the study of phase transition of two-dimensional complex plasmas
- Vibrational model of entropy in dense two-dimensional fluids
- Inferring partial crystalline order in liquids from electrical resistivity