In a previous paper, a precise relation between the chemical potential of a fully atomistic simulation and the simulation of an open system in the adaptive resolution method (AdResS) was identified. The starting point was the equivalence derived from the statistical partition functions between the grand potentials, Ω, of the open system and of the equivalent subregion in the fully atomistic simulation of reference. In this work, instead, the authors treat the identity for the grand potential based on the thermodynamic relation Ω=− and investigate the behavior of the pressure in the coupling region of the adaptive resolution method (AdResS). The authors confirm the physical consistency of the method for determining the chemical potential des...
The simulation of open molecular systems requires explicit or implicit reservoirs of energy and part...
The AdResS method in molecular dynamics (MD) allows, in a grand canonical (GC) fashion, to change on...
The grand molecular dynamics (GMD) method has been extended and applied to examine the density depen...
The adaptive resolution simulation (AdResS) technique couples regions with different molecular resol...
We employ the adaptive resolution approach AdResS, in its recently developed Grand Canonical-like ve...
Adaptive Resolution Simulation (AdResS) is a multi-resolution method with open system characteristic...
n this work, we provide a detailed theoretical analysis, supported by numerical tests, of the reliab...
This article deals with the molecular dynamics simulation of open systems that can exchange energy a...
In this paper, we investigate the equilibrium statistical properties of both the force and potential...
Open systems have been the subject of interest in science for a long time because many complex molec...
The simulation of open molecular systems requires explicit or implicit reservoirs of energy and part...
In a recently proposed computational model of open molecular systems out of equilibrium the action ...
This thesis work is devoted to the conceptual and technical development of the Adaptive Resolution S...
We investigate the role of the thermodynamic (TD) force, as an essential and sufficient technical in...
We employ the adaptive resolution approach AdResS, in its recently developed Grand Canonical-like ve...
The simulation of open molecular systems requires explicit or implicit reservoirs of energy and part...
The AdResS method in molecular dynamics (MD) allows, in a grand canonical (GC) fashion, to change on...
The grand molecular dynamics (GMD) method has been extended and applied to examine the density depen...
The adaptive resolution simulation (AdResS) technique couples regions with different molecular resol...
We employ the adaptive resolution approach AdResS, in its recently developed Grand Canonical-like ve...
Adaptive Resolution Simulation (AdResS) is a multi-resolution method with open system characteristic...
n this work, we provide a detailed theoretical analysis, supported by numerical tests, of the reliab...
This article deals with the molecular dynamics simulation of open systems that can exchange energy a...
In this paper, we investigate the equilibrium statistical properties of both the force and potential...
Open systems have been the subject of interest in science for a long time because many complex molec...
The simulation of open molecular systems requires explicit or implicit reservoirs of energy and part...
In a recently proposed computational model of open molecular systems out of equilibrium the action ...
This thesis work is devoted to the conceptual and technical development of the Adaptive Resolution S...
We investigate the role of the thermodynamic (TD) force, as an essential and sufficient technical in...
We employ the adaptive resolution approach AdResS, in its recently developed Grand Canonical-like ve...
The simulation of open molecular systems requires explicit or implicit reservoirs of energy and part...
The AdResS method in molecular dynamics (MD) allows, in a grand canonical (GC) fashion, to change on...
The grand molecular dynamics (GMD) method has been extended and applied to examine the density depen...