The purpose of the present article is to compare different phase-space sampling methods, such as purely stochastic methods (Rejection method, Metropolized independence sampler, Importance Sampling), stochastically perturbed Molecular Dynamics methods (Hybrid Monte Carlo, Langevin Dynamics, Biased Random Walk), and purely deterministic methods (Nosé-Hoover chains, Nosé-Poincaré and Recursive Multiple Thermostats (RMT) methods). After recalling some theoretical convergence properties for the various methods, we provide some new convergence results for the Hybrid Monte Carlo scheme, requiring weaker (and easier to check) conditions than previously known conditions. We then turn to the numerical efficiency of the sampling schemes for a benc...
This book describes the mathematical underpinnings of algorithms used for molecular dynamics simulat...
We present a new approach in order to improve the convergence of Monte Carlo (MC) simulations of mol...
International audienceWe propose a new algorithm for sampling the N-body density mid R:Psi(R)mid R:(...
The purpose of the present article is to compare different phase-space sampling methods, such as pu...
International audienceThe purpose of the present article is to compare different phase-space samplin...
International audienceWe present an overview of sampling techniques in molecular dynamics. We start ...
We present an overview of sampling techniques in molecular dynamics. We start with phase-space sampl...
Enhanced sampling algorithms have emerged as powerful methods to extend the utility of molecular dyn...
We highlight some links between molecular dynamics and Monte Carlo algorithms used to simulate conde...
I will present some numerical challenges raised by the simulation of materials at the atomistic leve...
Molecular dynamics (MD) computations aim to simulate materials at the atomic level by approximating...
International audienceWe consider numerical methods for thermodynamic sampling, i.e. computing seque...
The contributions collected in this book move from the quantum-statistical description to the validi...
We discuss several algorithms for sampling from unnormalized probability distributions in statistica...
The hybrid Monte Carlo (HMC) method is a popular and rigorous method for sampling from a canonical e...
This book describes the mathematical underpinnings of algorithms used for molecular dynamics simulat...
We present a new approach in order to improve the convergence of Monte Carlo (MC) simulations of mol...
International audienceWe propose a new algorithm for sampling the N-body density mid R:Psi(R)mid R:(...
The purpose of the present article is to compare different phase-space sampling methods, such as pu...
International audienceThe purpose of the present article is to compare different phase-space samplin...
International audienceWe present an overview of sampling techniques in molecular dynamics. We start ...
We present an overview of sampling techniques in molecular dynamics. We start with phase-space sampl...
Enhanced sampling algorithms have emerged as powerful methods to extend the utility of molecular dyn...
We highlight some links between molecular dynamics and Monte Carlo algorithms used to simulate conde...
I will present some numerical challenges raised by the simulation of materials at the atomistic leve...
Molecular dynamics (MD) computations aim to simulate materials at the atomic level by approximating...
International audienceWe consider numerical methods for thermodynamic sampling, i.e. computing seque...
The contributions collected in this book move from the quantum-statistical description to the validi...
We discuss several algorithms for sampling from unnormalized probability distributions in statistica...
The hybrid Monte Carlo (HMC) method is a popular and rigorous method for sampling from a canonical e...
This book describes the mathematical underpinnings of algorithms used for molecular dynamics simulat...
We present a new approach in order to improve the convergence of Monte Carlo (MC) simulations of mol...
International audienceWe propose a new algorithm for sampling the N-body density mid R:Psi(R)mid R:(...