We consider the computation of the coexistence pressure of the liquid-solid transition of a system of hard spheres from direct simulation of the inhomogeneous system formed from liquid and solid phases separated by an interface. Monte Carlo simulations of the interfacial system are performed in three different ensembles. In a first approach, a series of simulations is carried out in the isothermal-isobaric ensemble, where the solid is allowed to relax to its equilibrium crystalline structure, thus avoiding the appearance of artificial stress in the system. Here, the total volume of the system fluctuates due to changes in the three dimensions of the simulation box. In a second approach, we consider simulations of the inhomogeneous sys...
The solid–liquid equilibrium phase transition of a one-component Lennard-Jones system is determined ...
We present a direct calculation by molecular-dynamics computer simulation of the crystal/melt interf...
This is the publisher's version, also available electronically from http://journals.aps.org/pre/abst...
We present a tethered Monte Carlo simulation of the crystallization of hard spheres. Our method boos...
Monte Carlo simulations at constant pressure are performed to study coexistence and interfacial prop...
This project calculates the melting temperature as a function of pressure for a system defined by th...
We present the results of a computer simulation study of the solid-liquid coexistence of a binary ha...
A formalism to determine coexistence points by means of Monte Carlo simulations is presented. The ge...
A formalism to determine coexistence points by means of Monte Carlo simulations is presented. The ge...
The authors report the first numerical simulation of the melting curve of a binary mixture. The melt...
A crystal nucleus in a finite volume may exhibit phase coexistence with a surrounding fluid. The the...
A crystal nucleus in a finite volume may exhibit phase coexistence with a surrounding fluid. The the...
An exhaustive study by molecular dynamics has been performed to analyze the factors that enhance the...
An exhaustive study by molecular dynamics has been performed to analyze the factors that enhance the...
In this thesis, experiments and simulations are combined to investigate the nonequilibrium behaviour...
The solid–liquid equilibrium phase transition of a one-component Lennard-Jones system is determined ...
We present a direct calculation by molecular-dynamics computer simulation of the crystal/melt interf...
This is the publisher's version, also available electronically from http://journals.aps.org/pre/abst...
We present a tethered Monte Carlo simulation of the crystallization of hard spheres. Our method boos...
Monte Carlo simulations at constant pressure are performed to study coexistence and interfacial prop...
This project calculates the melting temperature as a function of pressure for a system defined by th...
We present the results of a computer simulation study of the solid-liquid coexistence of a binary ha...
A formalism to determine coexistence points by means of Monte Carlo simulations is presented. The ge...
A formalism to determine coexistence points by means of Monte Carlo simulations is presented. The ge...
The authors report the first numerical simulation of the melting curve of a binary mixture. The melt...
A crystal nucleus in a finite volume may exhibit phase coexistence with a surrounding fluid. The the...
A crystal nucleus in a finite volume may exhibit phase coexistence with a surrounding fluid. The the...
An exhaustive study by molecular dynamics has been performed to analyze the factors that enhance the...
An exhaustive study by molecular dynamics has been performed to analyze the factors that enhance the...
In this thesis, experiments and simulations are combined to investigate the nonequilibrium behaviour...
The solid–liquid equilibrium phase transition of a one-component Lennard-Jones system is determined ...
We present a direct calculation by molecular-dynamics computer simulation of the crystal/melt interf...
This is the publisher's version, also available electronically from http://journals.aps.org/pre/abst...