We present a multiscale approach to the modeling of polymer dynamics in the presence of a fluid solvent. The approach combines Langevin Molecular Dynamics (MD) techniques with a mesoscopic Lattice-Boltzmann (LB) method for the solvent dynamics. A unique feature of the present approach is that hydrodynamic interactions between the solute macromolecule and the aqueous solvent are handled explicitly, and yet in a computationally tractable way due to the dual particle-field nature of the LB solver. The suitability of the present LB-MD multiscale approach is demonstrated for the problem of polymer fast translocation through a nanopore. We also provide an interpretation of our results in the context of DNA translocation through a nanopore, a prob...
I introduce two mesoscale algorithms, lattice Boltzmann and stochastic rotation dynamics, and show h...
We demonstrate the excellent parallel scalability and global performance on the IBM Blue-Gene Superc...
Molecular Dynamics is a very powerful technique for the investigation of matter at nanoscopic level...
Abstract. We present a multiscale approach to the modeling of polymer dynamics in the presence of a ...
A multiscale approach is used to simulate the translocation of DNA through a nanopore. Within this s...
We have developed a theoretical and computational approach to deal with systems that involve a dispa...
Complex fluid-fluid interfaces featuring mesoscale structures with adsorbed particles are key compon...
Complex fluid-fluid interfaces featuring mesoscale structures with adsorbed particles are key compon...
A novel framework for modelling biomolecular systems at multiple scales in space and time simultaneo...
This article concerns numerical simulations of the dynamics of particles immersed in a continuum sol...
This paper was presented at the 3rd Micro and Nano Flows Conference (MNF2011), which was held at the...
Mesoscale simulations of hydrodynamic media have attracted great interest during the last years in o...
One of the most important developments in the last centuries is the process of miniaturisation and u...
A novel multi-scale simulation method developed to describe mesoscale phenomena occurring in bioflui...
Màster en BiofísicaA complex composed of a polymer and a colloid coupled together and immersed in a ...
I introduce two mesoscale algorithms, lattice Boltzmann and stochastic rotation dynamics, and show h...
We demonstrate the excellent parallel scalability and global performance on the IBM Blue-Gene Superc...
Molecular Dynamics is a very powerful technique for the investigation of matter at nanoscopic level...
Abstract. We present a multiscale approach to the modeling of polymer dynamics in the presence of a ...
A multiscale approach is used to simulate the translocation of DNA through a nanopore. Within this s...
We have developed a theoretical and computational approach to deal with systems that involve a dispa...
Complex fluid-fluid interfaces featuring mesoscale structures with adsorbed particles are key compon...
Complex fluid-fluid interfaces featuring mesoscale structures with adsorbed particles are key compon...
A novel framework for modelling biomolecular systems at multiple scales in space and time simultaneo...
This article concerns numerical simulations of the dynamics of particles immersed in a continuum sol...
This paper was presented at the 3rd Micro and Nano Flows Conference (MNF2011), which was held at the...
Mesoscale simulations of hydrodynamic media have attracted great interest during the last years in o...
One of the most important developments in the last centuries is the process of miniaturisation and u...
A novel multi-scale simulation method developed to describe mesoscale phenomena occurring in bioflui...
Màster en BiofísicaA complex composed of a polymer and a colloid coupled together and immersed in a ...
I introduce two mesoscale algorithms, lattice Boltzmann and stochastic rotation dynamics, and show h...
We demonstrate the excellent parallel scalability and global performance on the IBM Blue-Gene Superc...
Molecular Dynamics is a very powerful technique for the investigation of matter at nanoscopic level...