Abstract The atomistic simulation of many processes in materials involves large size model systems where different levels of complexity need to be described simultaneously. While accurate quantum mechanical simulations of large-size systems are usually not affordable, less computationally intensive classical models are not suitable for the description of many chemical processes. Hybrid (quantum/classical) modelling schemes are required in these circumstances. We describe the \u201cLearn on the fly\u201d (LOTF) hybrid molecular dynamics scheme. Some technical aspects of this technique are illustrated through examples of its applications to multiscale processes in silicon
Chemistry is a quantitative science in which rate processes play a major role. Not only they determi...
Now that the modeling of simple semiconductor systems has become reliable, accurate and routine, att...
This book is devoted to a description of the modeling of nanosystems and a detailed exposition of th...
The atomistic simulation of many processes in materials involves large-size model systems where diff...
We describe and test a novel molecular dynamics method which combines quantum-mechanical embedding a...
Molecular-dynamics (MD) simulations constitute an important tool in the study of nanoscale metallic ...
The interface of quantum mechanics methods with classical atomistic simulation techniques, such as m...
Today, many fields of rapidly growing research about nanomaterials and nanodevices are dependent on ...
During the last decade the field of computational chem. has experienced an enormous progress. Due to...
Now that the modeling of simple semiconductor systems has become reliable, accurate and routine, att...
Quantum molecular dynamics is the computer simulation of atomic many-body ensembles based on classic...
Molecular dynamics simulations are able to predict structural, dynamical and energetic properties of...
Molecular Dynamics is a two-volume compendium of the ever-growing applications of molecular dynamics...
We present a hybrid multiscale method for coupling quantum mechanicsto empirical molecular dynamics,...
Many aspects of materials deformation and failure are controlled by atomic-scale phenomena that can ...
Chemistry is a quantitative science in which rate processes play a major role. Not only they determi...
Now that the modeling of simple semiconductor systems has become reliable, accurate and routine, att...
This book is devoted to a description of the modeling of nanosystems and a detailed exposition of th...
The atomistic simulation of many processes in materials involves large-size model systems where diff...
We describe and test a novel molecular dynamics method which combines quantum-mechanical embedding a...
Molecular-dynamics (MD) simulations constitute an important tool in the study of nanoscale metallic ...
The interface of quantum mechanics methods with classical atomistic simulation techniques, such as m...
Today, many fields of rapidly growing research about nanomaterials and nanodevices are dependent on ...
During the last decade the field of computational chem. has experienced an enormous progress. Due to...
Now that the modeling of simple semiconductor systems has become reliable, accurate and routine, att...
Quantum molecular dynamics is the computer simulation of atomic many-body ensembles based on classic...
Molecular dynamics simulations are able to predict structural, dynamical and energetic properties of...
Molecular Dynamics is a two-volume compendium of the ever-growing applications of molecular dynamics...
We present a hybrid multiscale method for coupling quantum mechanicsto empirical molecular dynamics,...
Many aspects of materials deformation and failure are controlled by atomic-scale phenomena that can ...
Chemistry is a quantitative science in which rate processes play a major role. Not only they determi...
Now that the modeling of simple semiconductor systems has become reliable, accurate and routine, att...
This book is devoted to a description of the modeling of nanosystems and a detailed exposition of th...