In the framework of a recently developed scheme for a hybrid particle-field simulation techniques where self-consistent field (SCF) theory and particle models (molecular dynamics) are combined J. Chem. Phys. 130, 214106 (2009), we developed a general formulation for the calculation of instantaneous pressure and stress tensor. The expressions have been derived from statistical mechanical definition of the pressure starting from the expression for the free energy functional in the SCF theory. An implementation of the derived formulation suitable for hybrid particle-field molecular dynamics-self-consistent field simulations is described. A series of test simulations on model systems are reported comparing the calculated pressure with those obt...
We discuss different definitions of pressure for a system of active spherical particles driven by a ...
To reduce the CPU time needed for Molecular Dynamics (MD) simulations or Direct Simulation Monte Car...
Abstract: An atomistic level stress tensor is defined with physical clarity, based on the SPH method...
Hybrid particle-field methods are computationally efficient approaches for modeling soft matter syst...
A conceptually simple method to calculate local and average pressure tensors in simulations of molec...
We consider some fundamental aspects of the calculation of the pressure from simulations of systems ...
O. R. Walton1°. As the authors correctly point out, an ex-pression for the stress due to a system of...
We propose a theoretical scheme for a hybrid simulation technique where self-consistent field theory...
Abstract Numerical modeling of nano/micro devices needs measurement of thermo-fluid properties in mo...
The expression of equilibrium pressure tensor for uniform systems derived from Virial theorem can be...
We show how an existing concurrent multi-scale method named hybrid particle field-molecular dynamics...
Particle-and-Force models for high-speed-computer calculations of fluid dynamics problems have sever...
The parallel implementation of a recently developed hybrid scheme for molecular dynamics (MD) simula...
Hybrid particle–field methods couple coarse-grained particles through a density field-based intermol...
Ewald summation and physically equivalent methods such as particle-mesh Ewald, kubic-harmonic expans...
We discuss different definitions of pressure for a system of active spherical particles driven by a ...
To reduce the CPU time needed for Molecular Dynamics (MD) simulations or Direct Simulation Monte Car...
Abstract: An atomistic level stress tensor is defined with physical clarity, based on the SPH method...
Hybrid particle-field methods are computationally efficient approaches for modeling soft matter syst...
A conceptually simple method to calculate local and average pressure tensors in simulations of molec...
We consider some fundamental aspects of the calculation of the pressure from simulations of systems ...
O. R. Walton1°. As the authors correctly point out, an ex-pression for the stress due to a system of...
We propose a theoretical scheme for a hybrid simulation technique where self-consistent field theory...
Abstract Numerical modeling of nano/micro devices needs measurement of thermo-fluid properties in mo...
The expression of equilibrium pressure tensor for uniform systems derived from Virial theorem can be...
We show how an existing concurrent multi-scale method named hybrid particle field-molecular dynamics...
Particle-and-Force models for high-speed-computer calculations of fluid dynamics problems have sever...
The parallel implementation of a recently developed hybrid scheme for molecular dynamics (MD) simula...
Hybrid particle–field methods couple coarse-grained particles through a density field-based intermol...
Ewald summation and physically equivalent methods such as particle-mesh Ewald, kubic-harmonic expans...
We discuss different definitions of pressure for a system of active spherical particles driven by a ...
To reduce the CPU time needed for Molecular Dynamics (MD) simulations or Direct Simulation Monte Car...
Abstract: An atomistic level stress tensor is defined with physical clarity, based on the SPH method...