Using simulations or experiments performed at some set of temperatures to learn about the physics or chemistry at some other arbitrary temperature is a problem of immense practical and theoretical relevance. Here we develop a framework based on statistical mechanics and generative Artificial Intelligence that allows solving this problem. Specifically, we work with denoising diffusion probabilistic models, and show how these models in combination with replica exchange molecular dynamics achieve superior sampling of the biomolecular energy landscape at temperatures that were never even simulated without assuming any particular slow degrees of freedom. The key idea is to treat the temperature as a fluctuating random variable and not a control ...
Phase transitions are ubiquitous across life, yet hard to quantify and describe accurately. In this ...
AbstractA novel method has been implemented to compute the density of states of proteins. A united a...
Replica exchange methods (REMs) are increasingly used to improve sampling in molecular dynamics (MD)...
Parallel tempering (PT) molecular dynamics simulations have been extensively investigated as a means...
To decipher the biomolecular interaction mechanism play an important role in understanding the myste...
The computational study of conformational transitions in RNA and proteins with atomistic molecular d...
Classical atomistic simulations of biomolecules play an increasingly important role in molecular lif...
We compare two standard replica exchange methods using temperature and dielectric constant as the sc...
Biased sampling of collective variables is widely used to accelerate rare events in molecular simula...
Computing equilibrium states in condensed-matter many-body systems, such as solvated proteins, is a ...
AbstractToday's standard molecular dynamics simulations of moderately sized biomolecular systems at ...
We review a selection of methods for performing enhanced sampling in molecular dynamics simulations....
Boltzmann generators approach the sampling problem in many-body physics by combining a normalizing f...
Partial funding for Open Access provided by the UMD Libraries Open Access Publishing Fund.The abilit...
Molecular systems often remain trapped for long times around some local minimum of the potential ene...
Phase transitions are ubiquitous across life, yet hard to quantify and describe accurately. In this ...
AbstractA novel method has been implemented to compute the density of states of proteins. A united a...
Replica exchange methods (REMs) are increasingly used to improve sampling in molecular dynamics (MD)...
Parallel tempering (PT) molecular dynamics simulations have been extensively investigated as a means...
To decipher the biomolecular interaction mechanism play an important role in understanding the myste...
The computational study of conformational transitions in RNA and proteins with atomistic molecular d...
Classical atomistic simulations of biomolecules play an increasingly important role in molecular lif...
We compare two standard replica exchange methods using temperature and dielectric constant as the sc...
Biased sampling of collective variables is widely used to accelerate rare events in molecular simula...
Computing equilibrium states in condensed-matter many-body systems, such as solvated proteins, is a ...
AbstractToday's standard molecular dynamics simulations of moderately sized biomolecular systems at ...
We review a selection of methods for performing enhanced sampling in molecular dynamics simulations....
Boltzmann generators approach the sampling problem in many-body physics by combining a normalizing f...
Partial funding for Open Access provided by the UMD Libraries Open Access Publishing Fund.The abilit...
Molecular systems often remain trapped for long times around some local minimum of the potential ene...
Phase transitions are ubiquitous across life, yet hard to quantify and describe accurately. In this ...
AbstractA novel method has been implemented to compute the density of states of proteins. A united a...
Replica exchange methods (REMs) are increasingly used to improve sampling in molecular dynamics (MD)...