Computing the equilibrium properties of complex systems, such as free energy differences, is often hampered by rare events in the dynamics. Enhanced sampling methods may be used in order to speed up sampling by, for example, using high temperatures, as in parallel tempering, or simulating with a biasing potential such as in the case of umbrella sampling. The equilibrium properties of the thermodynamic state of interest (e.g., lowest temperature or unbiased potential) can be computed using reweighting estimators such as the weighted histogram analysis method or the multistate Bennett acceptance ratio (MBAR). weighted histogram analysis method and MBAR produce unbiased estimates, the simulation samples from the global equilibria at their resp...
We present here two novel algorithms for simulated tempering simulations, which break the detailed b...
Classical atomistic simulations of biomolecules play an increasingly important role in molecular lif...
Classical atomistic simulations of biomolecules play an increasingly important role in molecular lif...
Computing the equilibrium properties of complex systems, such as free energy differences, is often h...
We propose a discrete transition-based reweighting analysis method (dTRAM) for analyzing configurati...
The dynamics of molecules are governed by rare event transitions between long-lived (metastable) sta...
We propose a discrete transition-based reweighting analysis method (dTRAM) for analyzing configurati...
Abstract. When studying high-dimensional dynamical systems such as macromolecules, quan-tum systems ...
Abstract: The growing adoption of generalized-ensemble algorithms for biomolecular simulation has re...
We present a new method to calculate the density of states using the multistate Bennett acceptance r...
We present a new method to calculate the density of states using the multistate Bennett acceptance r...
Multistate reweighting methods such as the multistate Bennett acceptance ratio (MBAR) can predict fr...
The dynamics of molecules are governed by rare event transitions between long-lived (metastable) sta...
Equilibrium sampling is at the core of computational thermodynamics, aiding our understanding of var...
Parallel tempering (PT) molecular dynamics simulations have been extensively investigated as a means...
We present here two novel algorithms for simulated tempering simulations, which break the detailed b...
Classical atomistic simulations of biomolecules play an increasingly important role in molecular lif...
Classical atomistic simulations of biomolecules play an increasingly important role in molecular lif...
Computing the equilibrium properties of complex systems, such as free energy differences, is often h...
We propose a discrete transition-based reweighting analysis method (dTRAM) for analyzing configurati...
The dynamics of molecules are governed by rare event transitions between long-lived (metastable) sta...
We propose a discrete transition-based reweighting analysis method (dTRAM) for analyzing configurati...
Abstract. When studying high-dimensional dynamical systems such as macromolecules, quan-tum systems ...
Abstract: The growing adoption of generalized-ensemble algorithms for biomolecular simulation has re...
We present a new method to calculate the density of states using the multistate Bennett acceptance r...
We present a new method to calculate the density of states using the multistate Bennett acceptance r...
Multistate reweighting methods such as the multistate Bennett acceptance ratio (MBAR) can predict fr...
The dynamics of molecules are governed by rare event transitions between long-lived (metastable) sta...
Equilibrium sampling is at the core of computational thermodynamics, aiding our understanding of var...
Parallel tempering (PT) molecular dynamics simulations have been extensively investigated as a means...
We present here two novel algorithms for simulated tempering simulations, which break the detailed b...
Classical atomistic simulations of biomolecules play an increasingly important role in molecular lif...
Classical atomistic simulations of biomolecules play an increasingly important role in molecular lif...