Coarse-grained molecular dynamics (CGMD) is a technique developed as a concurrent multiscale model that couples conventional molecular dynamics (MD) to a more coarse-grained description of the periphery. The coarse-grained regions are modeled on a mesh in a formulation that generalizes conventional finite element modeling (FEM) of continuum elasticity. CGMD is derived solely from the MD model, however, and has no continuum parameters. As a result, it provides a coupling that is smooth and provides control of errors that arise at the coupling between the atomistic and coarse-grained regions. In this article, we elaborate on the formulation of CGMD, describing in detail how CGMD is applied to anharmonic solids and finite temperature simulatio...
The Green's function molecular dynamics (GFMD) method for the simulation of incompressible solids un...
Using a combination of statistical mechanics and finite-element interpolation, we develop a coarse-g...
In molecular simulations, the frequencies of the low-frequency modes are many orders of magnitude lo...
In this work, we investigate the application of coarse-graining (CG) methods to molecular dynamics (...
Using a combination of statistical mechanics and finite-element interpolation, we develop a coarse-g...
We review concurrent multiscale simulations of dy-namic and temperature-dependent processes found in...
This report summarizes activities undertaken during FY08-FY10 for the LDRD Peridynamics as a Rigorou...
A dynamical atomistic chain to simulate mechanical properties of a one-dimensional material with zer...
A dynamical atomistic chain to simulate mechanical properties of a one-dimensional material with zer...
A dynamical atomistic chain to simulate mechanical properties of a one-dimensional material with zer...
Coarse-grained molecular dynamics (CGMD) simulations are increasingly being used to analyze the beha...
In this paper, four coarse-graining (CG) models are proposed to accelerate molecular dynamics simula...
Coarse-grained molecular dynamics (CGMD) simulations are increasingly being used to analyze the beh...
We derive a systematic and general method for parameterizing coarse-grained molecular models consist...
Abstract. We present a new framework for coarse-graining molecular dynamics models for crystalline s...
The Green's function molecular dynamics (GFMD) method for the simulation of incompressible solids un...
Using a combination of statistical mechanics and finite-element interpolation, we develop a coarse-g...
In molecular simulations, the frequencies of the low-frequency modes are many orders of magnitude lo...
In this work, we investigate the application of coarse-graining (CG) methods to molecular dynamics (...
Using a combination of statistical mechanics and finite-element interpolation, we develop a coarse-g...
We review concurrent multiscale simulations of dy-namic and temperature-dependent processes found in...
This report summarizes activities undertaken during FY08-FY10 for the LDRD Peridynamics as a Rigorou...
A dynamical atomistic chain to simulate mechanical properties of a one-dimensional material with zer...
A dynamical atomistic chain to simulate mechanical properties of a one-dimensional material with zer...
A dynamical atomistic chain to simulate mechanical properties of a one-dimensional material with zer...
Coarse-grained molecular dynamics (CGMD) simulations are increasingly being used to analyze the beha...
In this paper, four coarse-graining (CG) models are proposed to accelerate molecular dynamics simula...
Coarse-grained molecular dynamics (CGMD) simulations are increasingly being used to analyze the beh...
We derive a systematic and general method for parameterizing coarse-grained molecular models consist...
Abstract. We present a new framework for coarse-graining molecular dynamics models for crystalline s...
The Green's function molecular dynamics (GFMD) method for the simulation of incompressible solids un...
Using a combination of statistical mechanics and finite-element interpolation, we develop a coarse-g...
In molecular simulations, the frequencies of the low-frequency modes are many orders of magnitude lo...