In this paper, we propose a new generic approach for reverse mapping from coarse-grained to atomistic scale based on the adaptive resolution scheme (AdResS). In AdResS simulation, two spatial domains, modeled at two different scales, are brought together in a concurrent simulation by defining a hybrid region where particles can switch representation from one model to another. We use AdResS as a central part of a reverse mapping algorithm from a different perspective by treating the whole simulation box as a hybrid region and changing the resolution as a function of time during the course of a molecular dynamics simulation. The proposed method depends only on a single parameter that controls the reverse mapping process and it is independent ...
We develop here an adaptive multiresolution method for the simulation of complex heterogeneous syste...
Computer simulations of condensed phases and biochemical systems have lead to profound new insight i...
Computer simulations of condensed phases and biochemical systems have lead to profound new insight i...
In this paper, we propose a new generic approach for reverse mapping from coarse-grained to atomisti...
In this paper, we propose a new generic approach for reverse mapping from coarse-grained to atomisti...
In this paper, we propose a new generic approach for reverse mapping from coarse-grained to atomisti...
The study of polymer-based composites is a challenging multiscale problem, involving multiple time a...
The conversion of coarse-grained to atomistic models is an important step in obtaining insight about...
Multiscale techniques are becoming increasingly important for molecular simulation as a result of in...
The conversion of coarse-grained to atomistic models is an important step in obtaining insight about...
Abstract: We derive a Hamiltonian and present a simula-tion protocol for mixed-resolution systems th...
Molecular dynamics simulations at the atomic scale are a powerful tool to study the structure and dy...
The AdResS method in molecular dynamics (MD) allows, in a grand canonical (GC) fashion, to change on...
Understanding mesoscopic phenomena in terms of the fundamental motions of atoms and electrons poses ...
Multiscale techniques bridge what is often mutually excluding in computer models: accuracy and effic...
We develop here an adaptive multiresolution method for the simulation of complex heterogeneous syste...
Computer simulations of condensed phases and biochemical systems have lead to profound new insight i...
Computer simulations of condensed phases and biochemical systems have lead to profound new insight i...
In this paper, we propose a new generic approach for reverse mapping from coarse-grained to atomisti...
In this paper, we propose a new generic approach for reverse mapping from coarse-grained to atomisti...
In this paper, we propose a new generic approach for reverse mapping from coarse-grained to atomisti...
The study of polymer-based composites is a challenging multiscale problem, involving multiple time a...
The conversion of coarse-grained to atomistic models is an important step in obtaining insight about...
Multiscale techniques are becoming increasingly important for molecular simulation as a result of in...
The conversion of coarse-grained to atomistic models is an important step in obtaining insight about...
Abstract: We derive a Hamiltonian and present a simula-tion protocol for mixed-resolution systems th...
Molecular dynamics simulations at the atomic scale are a powerful tool to study the structure and dy...
The AdResS method in molecular dynamics (MD) allows, in a grand canonical (GC) fashion, to change on...
Understanding mesoscopic phenomena in terms of the fundamental motions of atoms and electrons poses ...
Multiscale techniques bridge what is often mutually excluding in computer models: accuracy and effic...
We develop here an adaptive multiresolution method for the simulation of complex heterogeneous syste...
Computer simulations of condensed phases and biochemical systems have lead to profound new insight i...
Computer simulations of condensed phases and biochemical systems have lead to profound new insight i...