Thermostats are often used in various condensed matter problems, e.g. when a biological molecule undergoes a transformation in a solution, a crystal surface is irradiated with energetic particles, a crack propagates in a solid upon applied stress, two surfaces slide with respect to each other, an excited local phonon dissipates its energy into a crystal bulk, and so on. In all of these problems, as well as in many others, there is an energy transfer between different local parts of the entire system kept at a constant temperature. Very often, when modelling such processes using molecular dynamics simulations, thermostatting is done using strictly equilibrium approaches serving to describe the NV T ensemble. In this paper we critically dis...
Generalized Langevin Equation (GLE) thermostats have been used very effectively as a tool to manipul...
When Molecular Dynamics (MD) was originally conceived, the trajectories of atoms are determined by n...
In this article, we present several algorithms for stochastic dynamics, including Langevin dynamics ...
Nonequilibrium molecular dynamics (NEMD) has been extensively used to study thermal transport at var...
The numerical investigation of the statics and dynamics of systems in non-equilibrium in general, an...
The numerical investigation of the statics and dynamics of systems in non-equilibrium in general, an...
Molecular dynamics can be used as a very effective, general-purpose approach to gen-erate atomic con...
The performance of popular molecular dynamics (MD) thermostat algorithms in constant temperature sim...
Nonequilibrium molecular dynamics (NEMD) has been extensively used to study thermal transport at var...
Nonequilibrium molecular dynamics (NEMD) has been extensively used to study thermal transport at var...
Nonequilibrium molecular dynamics (NEMD) has been extensively used to study thermal transport at var...
Nonequilibrium molecular dynamics (NEMD) has been extensively used to study thermal transport at var...
Generalized Langevin Equation (GLE) thermostats have been used very effectively as a tool to manipul...
Temperature control algorithms in molecular dynamics (MD) simulations are necessary to study isother...
International audienceLangevin dynamics is a versatile stochastic model used in biology, chemistry, ...
Generalized Langevin Equation (GLE) thermostats have been used very effectively as a tool to manipul...
When Molecular Dynamics (MD) was originally conceived, the trajectories of atoms are determined by n...
In this article, we present several algorithms for stochastic dynamics, including Langevin dynamics ...
Nonequilibrium molecular dynamics (NEMD) has been extensively used to study thermal transport at var...
The numerical investigation of the statics and dynamics of systems in non-equilibrium in general, an...
The numerical investigation of the statics and dynamics of systems in non-equilibrium in general, an...
Molecular dynamics can be used as a very effective, general-purpose approach to gen-erate atomic con...
The performance of popular molecular dynamics (MD) thermostat algorithms in constant temperature sim...
Nonequilibrium molecular dynamics (NEMD) has been extensively used to study thermal transport at var...
Nonequilibrium molecular dynamics (NEMD) has been extensively used to study thermal transport at var...
Nonequilibrium molecular dynamics (NEMD) has been extensively used to study thermal transport at var...
Nonequilibrium molecular dynamics (NEMD) has been extensively used to study thermal transport at var...
Generalized Langevin Equation (GLE) thermostats have been used very effectively as a tool to manipul...
Temperature control algorithms in molecular dynamics (MD) simulations are necessary to study isother...
International audienceLangevin dynamics is a versatile stochastic model used in biology, chemistry, ...
Generalized Langevin Equation (GLE) thermostats have been used very effectively as a tool to manipul...
When Molecular Dynamics (MD) was originally conceived, the trajectories of atoms are determined by n...
In this article, we present several algorithms for stochastic dynamics, including Langevin dynamics ...