We present a technique for the structural optimization of atom models to study long time relaxation processes involving different time scales. The method takes advantage of the benefits of both the kinetic Monte Carlo (KMC) and the technimolecular dynamics simulation techniques. In contrast to ordinary KMC, our method allows for an estimation of a true lower limit for the time scale of a relaxation process. The scheme is fairly general in that neither the typical pathways nor the typical metastable states need to be known prior to the simulation. It is independent of the lattice type and the potential which describes the atomic interactions. It is adopted to study systems with structural and/or chemical inhomogeneity which makes it particu...
This review article is intended as a practical guide for newcomers to the field of kinetic Monte Car...
This review article is intended as a practical guide for newcomers to the field of kinetic Monte Car...
We formulate a theory of non-equilibrium statistical thermodynamics for ensembles of atoms or molecu...
We present a technique for the structural optimization of atom models to study long time relaxation ...
textThe timescale of chemical reactions in solid-state systems greatly exceeds what may be modeled ...
textThe timescale of chemical reactions in solid-state systems greatly exceeds what may be modeled ...
Classical harmonic transition state theory is considered and applied in discrete lattice cells with ...
We propose a hybrid deterministic and stochastic approach to achieve extended time scales in atomist...
Conventional molecular dynamics simulations have been proven instrumental to the understanding of ma...
We propose a hybrid deterministic and stochastic approach to achieve extended time scales in atomist...
Conventional molecular dynamics simulations have been proven instrumental to the understanding of ma...
The properties of materials, even at the atomic level, evolve on macroscopic time scales. Following ...
An important challenge in theoretical chemistry is the time scale problem. Atomic motion can be simu...
Phenomena such as solute strengthening in alloys as well as embrittlement of bimaterial interfaces a...
Phenomena such as solute strengthening in alloys as well as embrittlement of bimaterial interfaces a...
This review article is intended as a practical guide for newcomers to the field of kinetic Monte Car...
This review article is intended as a practical guide for newcomers to the field of kinetic Monte Car...
We formulate a theory of non-equilibrium statistical thermodynamics for ensembles of atoms or molecu...
We present a technique for the structural optimization of atom models to study long time relaxation ...
textThe timescale of chemical reactions in solid-state systems greatly exceeds what may be modeled ...
textThe timescale of chemical reactions in solid-state systems greatly exceeds what may be modeled ...
Classical harmonic transition state theory is considered and applied in discrete lattice cells with ...
We propose a hybrid deterministic and stochastic approach to achieve extended time scales in atomist...
Conventional molecular dynamics simulations have been proven instrumental to the understanding of ma...
We propose a hybrid deterministic and stochastic approach to achieve extended time scales in atomist...
Conventional molecular dynamics simulations have been proven instrumental to the understanding of ma...
The properties of materials, even at the atomic level, evolve on macroscopic time scales. Following ...
An important challenge in theoretical chemistry is the time scale problem. Atomic motion can be simu...
Phenomena such as solute strengthening in alloys as well as embrittlement of bimaterial interfaces a...
Phenomena such as solute strengthening in alloys as well as embrittlement of bimaterial interfaces a...
This review article is intended as a practical guide for newcomers to the field of kinetic Monte Car...
This review article is intended as a practical guide for newcomers to the field of kinetic Monte Car...
We formulate a theory of non-equilibrium statistical thermodynamics for ensembles of atoms or molecu...