We present results of a standard (constant energy) molecular dynamics simulation of Lennard-Jones microcrystals at low temperature. The kinetic energy fluctuations exhibit an anomalous behavior, being much larger than expected in a microcanonical ensemble; this is due to a dynamics, which is only weakly chaotic. Such a dynamics does not warrant the equivalence of time and ensemble averages, unless one extends the simulation over exceedingly long times. A similar phenomenon has been recently found in the simulation of a canonical ensemble through a Nosé-Hoover dynamics
The dynamical correlations of a model consisting of particles constrained on the line and interactin...
The dynamics of the small protein crambin is studied in the crystal environment by means of a 5.1 na...
The dynamics of the small protein crambin is studied in the crystal environment by means of a 5.1 na...
We present results of a standard (constant energy) molecular dynamics simulation of a Lennard-Jones ...
The relation between chaotic dynamics of nonlinear Hamiltonian systems and equilibrium statistical m...
In this work we present an analysis of temperature and pressure time series obtained by microcanonic...
In the present work we present an analysis of time series of instantaneous temperature and pressure ...
We have performed a molecular-dynamics simulation of a face-centered-cubic Lennard-Jones crystal, an...
We have performed a molecular-dynamics simulation of a face-centered-cubic Lennard-Jones crystal, an...
We present a new numerical Monte Carlo approach to determine the scaling behavior of lattice field t...
We study by computer simulation the behavior at low energy of a two-dimensional Lennard-Jones system...
We present a new numerical Monte Carlo approach to determine the scaling behavior of lattice field t...
We study by computer simulation the behavior at low energy of a two-dimensional Lennard-Jones system...
A Hamiltonian model living in a bounded phase space and with long-range interactions is studied. It ...
We explore the effects of thermostats in replica exchange molecular dynamics (REMD) simulations. For...
The dynamical correlations of a model consisting of particles constrained on the line and interactin...
The dynamics of the small protein crambin is studied in the crystal environment by means of a 5.1 na...
The dynamics of the small protein crambin is studied in the crystal environment by means of a 5.1 na...
We present results of a standard (constant energy) molecular dynamics simulation of a Lennard-Jones ...
The relation between chaotic dynamics of nonlinear Hamiltonian systems and equilibrium statistical m...
In this work we present an analysis of temperature and pressure time series obtained by microcanonic...
In the present work we present an analysis of time series of instantaneous temperature and pressure ...
We have performed a molecular-dynamics simulation of a face-centered-cubic Lennard-Jones crystal, an...
We have performed a molecular-dynamics simulation of a face-centered-cubic Lennard-Jones crystal, an...
We present a new numerical Monte Carlo approach to determine the scaling behavior of lattice field t...
We study by computer simulation the behavior at low energy of a two-dimensional Lennard-Jones system...
We present a new numerical Monte Carlo approach to determine the scaling behavior of lattice field t...
We study by computer simulation the behavior at low energy of a two-dimensional Lennard-Jones system...
A Hamiltonian model living in a bounded phase space and with long-range interactions is studied. It ...
We explore the effects of thermostats in replica exchange molecular dynamics (REMD) simulations. For...
The dynamical correlations of a model consisting of particles constrained on the line and interactin...
The dynamics of the small protein crambin is studied in the crystal environment by means of a 5.1 na...
The dynamics of the small protein crambin is studied in the crystal environment by means of a 5.1 na...