We present an approach to investigate the long-time stochastic dynamics of multidimensional classical systems, in contact with a heat bath. When the potential energy landscape is rugged, the kinetics displays a decoupling of short- and long-time scales and both molecular dynamics or Monte Carlo (MC) simulations are generally inefficient. Using a field theoretic approach, we perform analytically the average over the short-time stochastic fluctuations. This way, we obtain an effective theory, which generates the same long-time dynamics of the original theory, but has a lower time-resolution power. Such an approach is used to develop an improved version of the MC algorithm, which is particularly suitable to investigate the dynamics of rare con...
We present a technique for the structural optimization of atom models to study long time relaxation ...
Protein folding involves physical timescales - microseconds to seconds - that are too long to be...
We present here an efficient method for evaluating molecular trajectories over long time scales. The...
We present an approach to investigate the long-time stochastic dynamics of multidimensional classica...
This thesis addresses the sampling problem in a high-dimensional space, i.e., the computation of av...
We present a technique for the structural optimization of atom models to study long time relaxation ...
Many interesting rare events in molecular systems, like ligand association, protein folding or confo...
We propose a hybrid deterministic and stochastic approach to achieve extended time scales in atomist...
We propose a hybrid deterministic and stochastic approach to achieve extended time scales in atomist...
We present and analyze a general method to calculate time correlation functions from molecular dynam...
This article is concerned with the averaging principle and its extensions for stochastic dynamical s...
Molecular dynamics (MD) computations aim to simulate materials at the atomic level by approximating...
Using tools of statistical mechanics, it is routine to average over the distribution of microscopic ...
Abstract: Multiple time scale methodologies have gained widespread use in molecular dynamics simulat...
We present a Stochastic-Difference-Equation (SDE) approach to long time-scale molecular dynamics (MD...
We present a technique for the structural optimization of atom models to study long time relaxation ...
Protein folding involves physical timescales - microseconds to seconds - that are too long to be...
We present here an efficient method for evaluating molecular trajectories over long time scales. The...
We present an approach to investigate the long-time stochastic dynamics of multidimensional classica...
This thesis addresses the sampling problem in a high-dimensional space, i.e., the computation of av...
We present a technique for the structural optimization of atom models to study long time relaxation ...
Many interesting rare events in molecular systems, like ligand association, protein folding or confo...
We propose a hybrid deterministic and stochastic approach to achieve extended time scales in atomist...
We propose a hybrid deterministic and stochastic approach to achieve extended time scales in atomist...
We present and analyze a general method to calculate time correlation functions from molecular dynam...
This article is concerned with the averaging principle and its extensions for stochastic dynamical s...
Molecular dynamics (MD) computations aim to simulate materials at the atomic level by approximating...
Using tools of statistical mechanics, it is routine to average over the distribution of microscopic ...
Abstract: Multiple time scale methodologies have gained widespread use in molecular dynamics simulat...
We present a Stochastic-Difference-Equation (SDE) approach to long time-scale molecular dynamics (MD...
We present a technique for the structural optimization of atom models to study long time relaxation ...
Protein folding involves physical timescales - microseconds to seconds - that are too long to be...
We present here an efficient method for evaluating molecular trajectories over long time scales. The...