The prediction of the structural and thermodynamic properties of supercritical argon has been carried out by two independent routes: semianalytical calculations and numerical simulations. The first one is based on the hybridized mean spherical approximation (HMSA) conjugated with an effective pair potential that incorporates multipole dispersion interactions. The second one uses a very recent numerical simulation technique, inspired by the Car–Parrinello method [van der Hoef et al., J. Chem. Phys. 111, 1520 (1999)], which contains an effective quantum-mechanical representation of the underlying electronic structure. The latter approach allows us to treat the contribution of the three-body effects as well, and to validate the use of an effec...
In this work the phase behaviour of noble gases is studied comprehensively by different molecular si...
The potential function suggested by Tang and Toennies is parametrised to represent the thermodynamic...
A fourth order virial equation of state (VEOS) having a closed form was developed by solving cluster...
The prediction of the structural and thermodynamic properties of supercritical argon has been carrie...
Accurate molecular dynamics simulations are reported which quantify the contributions of two- and th...
Gibbs ensemble Monte Carlo simulations are reported for the vapor- liquid phase coexistence of argon...
Nonequilibrium molecular dynamics (NEMD) simulations are performed for argon at different strain rat...
Very simplified equations of state (EOS) are proposed for a system involving argon and consisting of...
The contributions of three-body triple dipole and dipole-dipole-quadrupole dispersion interactions t...
Advances in molecular simulation algorithms coupled with rapid growth in the calculation speed of mo...
With the aim of locating the origin of discrepancy between experimental and computer simulation resu...
Molecular simulation data are reported that indicate that there is a simple empirical relationship ...
Recently, the well-known point molecular attractive pair term, r-6 only asymptotically correct, has ...
The effect of three-body interactions on the solid-liquid phase boundaries of argon, krypton, and xe...
The three-body nonadditive interaction energy between argon atoms was calculated at 300 geometries u...
In this work the phase behaviour of noble gases is studied comprehensively by different molecular si...
The potential function suggested by Tang and Toennies is parametrised to represent the thermodynamic...
A fourth order virial equation of state (VEOS) having a closed form was developed by solving cluster...
The prediction of the structural and thermodynamic properties of supercritical argon has been carrie...
Accurate molecular dynamics simulations are reported which quantify the contributions of two- and th...
Gibbs ensemble Monte Carlo simulations are reported for the vapor- liquid phase coexistence of argon...
Nonequilibrium molecular dynamics (NEMD) simulations are performed for argon at different strain rat...
Very simplified equations of state (EOS) are proposed for a system involving argon and consisting of...
The contributions of three-body triple dipole and dipole-dipole-quadrupole dispersion interactions t...
Advances in molecular simulation algorithms coupled with rapid growth in the calculation speed of mo...
With the aim of locating the origin of discrepancy between experimental and computer simulation resu...
Molecular simulation data are reported that indicate that there is a simple empirical relationship ...
Recently, the well-known point molecular attractive pair term, r-6 only asymptotically correct, has ...
The effect of three-body interactions on the solid-liquid phase boundaries of argon, krypton, and xe...
The three-body nonadditive interaction energy between argon atoms was calculated at 300 geometries u...
In this work the phase behaviour of noble gases is studied comprehensively by different molecular si...
The potential function suggested by Tang and Toennies is parametrised to represent the thermodynamic...
A fourth order virial equation of state (VEOS) having a closed form was developed by solving cluster...