Many interesting rare events in molecular systems, like ligand association, protein folding or conformational changes, occur on timescales that often are not accessible by direct numerical simulation. Therefore, rare event approximation approaches like interface sampling, Markov state model building, or advanced reaction coordinate-based free energy estimation have attracted huge attention recently. In this article we analyze the reliability of such approaches. How precise is an estimate of long relaxation timescales of molecular systems resulting from various forms of rare event approximation methods? Our results give a theoretical answer to this question by relating it with the transfer operator approach to molecular dynamics. By doing so...
Transitions between metastable states govern many fundamental processes in physics, chemistry and bi...
Transitions between metastable states govern many fundamental processes in physics, chemistry and bi...
Conformational changes of proteins are an*Author contributed equally with all other contributors. es...
Many interesting rare events in molecular systems, like ligand association, protein folding or confo...
Many interesting rare events in molecular systems, like ligand association, protein folding or confo...
One of the main challenges in molecular dynamics is overcoming the ‘timescale barrier’: in many real...
A good deal of molecular dynamics simulations aims at predicting and quantifying rare events, such a...
The efficient calculation of rare-event kinetics in complex dynamical systems, such as the rate and ...
Protein folding involves physical timescales - microseconds to seconds - that are too long to be...
Rare events are processes that occur on time-scales longer than those currently accessible by brute ...
A good deal of molecular dynamics simulations aims at predicting and quantifying rare events, such a...
Molecular dynamics simulations can give atomistic insight into chemical systems and processes. Howev...
The efficient calculation of rare-event kinetics in complex dynamical systems, such as the rate and ...
Markov state models (MSMs) and other related kinetic network models are frequently used to study the...
Understanding the kinetic behavior of complex systems is crucial for the study of physical, chemical...
Transitions between metastable states govern many fundamental processes in physics, chemistry and bi...
Transitions between metastable states govern many fundamental processes in physics, chemistry and bi...
Conformational changes of proteins are an*Author contributed equally with all other contributors. es...
Many interesting rare events in molecular systems, like ligand association, protein folding or confo...
Many interesting rare events in molecular systems, like ligand association, protein folding or confo...
One of the main challenges in molecular dynamics is overcoming the ‘timescale barrier’: in many real...
A good deal of molecular dynamics simulations aims at predicting and quantifying rare events, such a...
The efficient calculation of rare-event kinetics in complex dynamical systems, such as the rate and ...
Protein folding involves physical timescales - microseconds to seconds - that are too long to be...
Rare events are processes that occur on time-scales longer than those currently accessible by brute ...
A good deal of molecular dynamics simulations aims at predicting and quantifying rare events, such a...
Molecular dynamics simulations can give atomistic insight into chemical systems and processes. Howev...
The efficient calculation of rare-event kinetics in complex dynamical systems, such as the rate and ...
Markov state models (MSMs) and other related kinetic network models are frequently used to study the...
Understanding the kinetic behavior of complex systems is crucial for the study of physical, chemical...
Transitions between metastable states govern many fundamental processes in physics, chemistry and bi...
Transitions between metastable states govern many fundamental processes in physics, chemistry and bi...
Conformational changes of proteins are an*Author contributed equally with all other contributors. es...