It was suggested in the literature that the self-diffusion coefficient of simple fluids can be approximated as a ratio of the squared thermal velocity of the atoms to the "fluid Einstein frequency", which can thus serve as a rough estimate of the friction (momentum transfer) rate in the dense fluid phase. In this article we test this suggestion using a single-component Yukawa fluid as a reference system. The available simulation data on self-diffusion in Yukawa fluids, complemented with new data for Yukawa melts (Yukawa fluids near the freezing phase transition), are carefully analyzed. It is shown that although not exact, this earlier suggestion nevertheless provides a very sensible way of normalization of the self-diffusion constant. Add...
For a very dense binary liquid of hard spheres the dependence of the velocity-autocorrelation functi...
We discuss dynamical properties of Yukawa systems, i.e., systems of particles interacting through Yu...
By using the technique of electrostatic levitation, the Ni self-diffusion, density, and viscosity of...
Self-diffusion coefficients of Yukawa systems in the fluid phase are obtained from molecular dynamic...
The authors propose a simple model for the calculation of the self-diffusion coefficient of classica...
We show that the kinetic-theoretical self-diffusion coefficient of an atomic fluid plays the same ro...
This is an introduction to the theory of interacting Brownian particles, as applied to charge-stabil...
Molecular dynamics computer simulations have been conducted to examine the self-diffusion process fo...
We present here a microscopic and self-consistent calculation of the self-diffusion coefficient of a...
By performing an elementary transformation, the conventional velocity autocorrelation function expre...
The suppression of the self-diffusion constant D<SUB>L</SUB> for a simple fluid in the long-time lim...
Molecular dynamics simulations have been used to calculate the self-diffusion coefficient, D, of the...
We provide a theoretical explanation for the observed quasiuniversality of the ratio of the longtime...
We provide a theoretical explanation for the observed quasiuniversality of the ratio of the long-tim...
A simple practical formula for the shear viscosity coefficient of Yukawa fluids is presented. This f...
For a very dense binary liquid of hard spheres the dependence of the velocity-autocorrelation functi...
We discuss dynamical properties of Yukawa systems, i.e., systems of particles interacting through Yu...
By using the technique of electrostatic levitation, the Ni self-diffusion, density, and viscosity of...
Self-diffusion coefficients of Yukawa systems in the fluid phase are obtained from molecular dynamic...
The authors propose a simple model for the calculation of the self-diffusion coefficient of classica...
We show that the kinetic-theoretical self-diffusion coefficient of an atomic fluid plays the same ro...
This is an introduction to the theory of interacting Brownian particles, as applied to charge-stabil...
Molecular dynamics computer simulations have been conducted to examine the self-diffusion process fo...
We present here a microscopic and self-consistent calculation of the self-diffusion coefficient of a...
By performing an elementary transformation, the conventional velocity autocorrelation function expre...
The suppression of the self-diffusion constant D<SUB>L</SUB> for a simple fluid in the long-time lim...
Molecular dynamics simulations have been used to calculate the self-diffusion coefficient, D, of the...
We provide a theoretical explanation for the observed quasiuniversality of the ratio of the longtime...
We provide a theoretical explanation for the observed quasiuniversality of the ratio of the long-tim...
A simple practical formula for the shear viscosity coefficient of Yukawa fluids is presented. This f...
For a very dense binary liquid of hard spheres the dependence of the velocity-autocorrelation functi...
We discuss dynamical properties of Yukawa systems, i.e., systems of particles interacting through Yu...
By using the technique of electrostatic levitation, the Ni self-diffusion, density, and viscosity of...