activity
19992010
most citedFluctuating hydrodynamic modelling of fluids at the nanoscale

93 citations · 174 across the 5 of their papers we have counts for

collaborators

7 papers

q-bio.MN2010

Statistical Analysis of Global Connectivity and Activity Distributions in Cellular Networks

Adrián López García de Lomana, Qasim K. Beg, G. de Fabritiis +1

Various molecular interaction networks have been claimed to follow power-law decay for their global connectivity distribution. It has been proposed that there may be underlying gen…

physics.flu-dyn2006★ 93 cited

Fluctuating hydrodynamic modelling of fluids at the nanoscale

G. De Fabritiis, M. Serrano, R. Delgado-Buscalioni +1

A good representation of mesoscopic fluids is required to combine with molecular simulations at larger length and time scales (De Fabritiis {\it et. al}, Phys. Rev. Lett. 97, 13450…

cond-mat.soft2006

A stochastic Trotter integration scheme for dissipative particle dynamics

M. Serrano, G. De Fabritiis, P. Español +1

In this article we show in details the derivation of an integration scheme for the dissipative particle dynamic model (DPD) using the stochastic Trotter formula [De Fabritiis et al…

physics.comp-ph2005★ 44 cited

Efficient numerical integrators for stochastic models

G. De Fabritiis, M. Serrano, P. Español +1

The efficient simulation of models defined in terms of stochastic differential equations (SDEs) depends critically on an efficient integration scheme. In this article, we investiga…

physics.chem-ph2004★ 37 cited

Energy controlled insertion of polar molecules in dense fluids

Gianni De Fabritiis, Rafael Delgado-Buscalioni, Peter V. Coveney

We present a method to search low energy configurations of polar molecules in the complex potential energy surfaces associated with dense fluids. The search is done in the configur…

cond-mat.soft2000

Foundations of Dissipative Particle Dynamics

Eirik G. Flekkoy, Peter V. Coveney, Gianni De Fabritiis

We derive a mesoscopic modeling and simulation technique that is very close to the technique known as dissipative particle dynamics. The model is derived from molecular dynamics by…