In this paper, we consider Langevin processes with mechanical constraints. The latter are a fundamental tool in molecular dynamics simulation for sampling purposes and for the computation of free energy differences. The results of this paper can be divided into three parts. (i) We propose a simple discretization of the constrained Langevin process based on a standard splitting strategy. We show how to correct the scheme so that it samples {\em exactly} the canonical measure restricted on a submanifold, using a Metropolis rule in the spirit of the Generalized Hybrid Monte Carlo (GHMC) algorithm. Moreover, we obtain, in some limiting regime, a consistent discretization of the overdamped Langevin (Brownian) dynamics on a submanifold, also samp...
The generalized Langevin equation (GLE) has been recently suggested to simulate the time evolution o...
We apply well-established concepts of Langevin sampling to derive a new class of algorithms for the ...
This note provides an introduction to molecular dynamics, the computational implementation of the th...
In this paper, we consider Langevin processes with mechanical constraints. The latter are a fundamen...
International audienceWe consider numerical methods for thermodynamic sampling, i.e. computing seque...
International audienceWe study Langevin dynamics with a kinetic energy different from the standard, ...
Computer simulation of complex nonlinear and disordered phenomena from materials science is rapidly ...
We propose a nonequilibrium sampling method for computing free energy profiles along a given reactio...
Molecular dynamics (MD) computations aim to simulate materials at the atomic level by approximating...
Systems possessing degrees of freedom operating on widely separated timescales, where the effects of...
Common algorithms for computationally simulating Langevin dynamics must discretize the stochastic di...
The dynamics of many-body complex processes is a challenge that many scientists from various fields...
A numerical method for studying molecular systems subject to a random force field leading to a Gauss...
We develop an efficient sampling method by simulating Langevin dynamics with an artificial force rat...
The generalized Langevin equation (GLE) [L. Kantorovich, Phys. Rev. B 78, 094304 (2008)], which desc...
The generalized Langevin equation (GLE) has been recently suggested to simulate the time evolution o...
We apply well-established concepts of Langevin sampling to derive a new class of algorithms for the ...
This note provides an introduction to molecular dynamics, the computational implementation of the th...
In this paper, we consider Langevin processes with mechanical constraints. The latter are a fundamen...
International audienceWe consider numerical methods for thermodynamic sampling, i.e. computing seque...
International audienceWe study Langevin dynamics with a kinetic energy different from the standard, ...
Computer simulation of complex nonlinear and disordered phenomena from materials science is rapidly ...
We propose a nonequilibrium sampling method for computing free energy profiles along a given reactio...
Molecular dynamics (MD) computations aim to simulate materials at the atomic level by approximating...
Systems possessing degrees of freedom operating on widely separated timescales, where the effects of...
Common algorithms for computationally simulating Langevin dynamics must discretize the stochastic di...
The dynamics of many-body complex processes is a challenge that many scientists from various fields...
A numerical method for studying molecular systems subject to a random force field leading to a Gauss...
We develop an efficient sampling method by simulating Langevin dynamics with an artificial force rat...
The generalized Langevin equation (GLE) [L. Kantorovich, Phys. Rev. B 78, 094304 (2008)], which desc...
The generalized Langevin equation (GLE) has been recently suggested to simulate the time evolution o...
We apply well-established concepts of Langevin sampling to derive a new class of algorithms for the ...
This note provides an introduction to molecular dynamics, the computational implementation of the th...