The possibility of observing chemical reactions in ab initio molecular dynamics runs is severely hindered by the short simulation time accessible. We propose a new method for accelerating the reaction process, based on the ideas of the extended Lagrangian and coarse-grained non-Markovian metadynamics. We demonstrate that by this method it is possible to simulate reactions involving complex atomic rearrangements and very large energy barriers in runs of a few picoseconds
Automatic potential energy surface (PES) exploration is important to a better understanding of react...
Automatic potential energy surface (PES) exploration is important to a better understanding of react...
We describe a flexible and broadly applicable energy refinement method, "nebterpolation," for identi...
The possibility of observing chemical reactions in ab initio molecular dynamics runs is severely hin...
The possibility of observing chemical reactions in ab initio molecular dynamics runs is severely hin...
The problem of observing rare events is pervasive among the molecular dynamics community and an arra...
We develop a new method combining replica exchange transition interface sampling with two distinct p...
The problem of observing rare events is pervasive among the molecular dynamics community and an arra...
The problem of observing rare events is pervasive among the molecular dynamics community and an arra...
The problem of observing rare events is pervasive among the molecular dynamics community and an arra...
The ab-initio molecular dynamics method proposed by Car and Parrinello (C-P) permits the simulation ...
A recently introduced computational algorithm to extend time scales of atomically detailed simulatio...
Conducting molecular dynamics (MD) simulations involving chemical reactions in large-scale condensed...
Automatic potential energy surface (PES) exploration is important to a better understanding of react...
This article presents the application of the reactive step molecular dynamics simulation method [M. ...
Automatic potential energy surface (PES) exploration is important to a better understanding of react...
Automatic potential energy surface (PES) exploration is important to a better understanding of react...
We describe a flexible and broadly applicable energy refinement method, "nebterpolation," for identi...
The possibility of observing chemical reactions in ab initio molecular dynamics runs is severely hin...
The possibility of observing chemical reactions in ab initio molecular dynamics runs is severely hin...
The problem of observing rare events is pervasive among the molecular dynamics community and an arra...
We develop a new method combining replica exchange transition interface sampling with two distinct p...
The problem of observing rare events is pervasive among the molecular dynamics community and an arra...
The problem of observing rare events is pervasive among the molecular dynamics community and an arra...
The problem of observing rare events is pervasive among the molecular dynamics community and an arra...
The ab-initio molecular dynamics method proposed by Car and Parrinello (C-P) permits the simulation ...
A recently introduced computational algorithm to extend time scales of atomically detailed simulatio...
Conducting molecular dynamics (MD) simulations involving chemical reactions in large-scale condensed...
Automatic potential energy surface (PES) exploration is important to a better understanding of react...
This article presents the application of the reactive step molecular dynamics simulation method [M. ...
Automatic potential energy surface (PES) exploration is important to a better understanding of react...
Automatic potential energy surface (PES) exploration is important to a better understanding of react...
We describe a flexible and broadly applicable energy refinement method, "nebterpolation," for identi...