We introduce a novel transition path (TPS) sampling scheme employing nested sampling. Analogous to how nested sampling explores the entire configurational phase space for atomistic systems, nested TPS samples the entire available trajectory space in one simulation. Thermodynamic and path observables can be constructed a posteriori for all temperatures simultaneously. We exploit this to compute the rate of rare processes at arbitrarily low temperature through the coupling to easily accessible rates at high temperature. We illustrate the method on several model systems
We present three algorithms for calculating rate constants and sampling transition paths for rare ev...
Computer simulations of molecular processes such as nucleation in first-order phase transitions or t...
Transition path sampling is a powerful tool in the study of rare events. Shooting trial trajectories...
We introduce a novel transition path (TPS) sampling scheme employing nested sampling. Analogous to h...
In the past 15 years transition path sampling (TPS) has evolved from its basic algorithm to an entir...
We develop two novel transition path sampling (TPS) algorithms for harvesting ensembles of rare even...
We propose a transition path sampling (TPS) scheme designed to enhance sampling in systems with mult...
We developed a multiple state transition path sampling (TPS) approach in which it is possible to sim...
We review two recently developed efficient methods for calculating rate constants of processes domin...
Abstract This article reviews the concepts and methods of transition path sampling. These methods al...
Nearly 20 years ago transition path sampling (TPS) emerged as an alternative method to free energy b...
International audiencetransition path sampling is a method for estimating the rates of rare events i...
Transition path sampling (TPS) was developed for studying activated processes in complex systems wit...
The nested sampling algorithm has been shown to be a general method for calculating the pressure-tem...
Transition path sampling techniques allow molecular dynamics simulations of complex systems to focus...
We present three algorithms for calculating rate constants and sampling transition paths for rare ev...
Computer simulations of molecular processes such as nucleation in first-order phase transitions or t...
Transition path sampling is a powerful tool in the study of rare events. Shooting trial trajectories...
We introduce a novel transition path (TPS) sampling scheme employing nested sampling. Analogous to h...
In the past 15 years transition path sampling (TPS) has evolved from its basic algorithm to an entir...
We develop two novel transition path sampling (TPS) algorithms for harvesting ensembles of rare even...
We propose a transition path sampling (TPS) scheme designed to enhance sampling in systems with mult...
We developed a multiple state transition path sampling (TPS) approach in which it is possible to sim...
We review two recently developed efficient methods for calculating rate constants of processes domin...
Abstract This article reviews the concepts and methods of transition path sampling. These methods al...
Nearly 20 years ago transition path sampling (TPS) emerged as an alternative method to free energy b...
International audiencetransition path sampling is a method for estimating the rates of rare events i...
Transition path sampling (TPS) was developed for studying activated processes in complex systems wit...
The nested sampling algorithm has been shown to be a general method for calculating the pressure-tem...
Transition path sampling techniques allow molecular dynamics simulations of complex systems to focus...
We present three algorithms for calculating rate constants and sampling transition paths for rare ev...
Computer simulations of molecular processes such as nucleation in first-order phase transitions or t...
Transition path sampling is a powerful tool in the study of rare events. Shooting trial trajectories...