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19982009
most citedHydrodynamic equations for self-propelled particles: microscopic derivation and stability analysis

348 citations · 588 across the 15 of their papers we have counts for

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cond-mat.stat-mech2009348 cited

Hydrodynamic equations for self-propelled particles: microscopic derivation and stability analysis

Eric Bertin, Michel Droz, Guillaume Grégoire

Considering a gas of self-propelled particles with binary interactions, we derive the hydrodynamic equations governing the density and velocity fields from the microscopic dynamics…

cond-mat.stat-mech20084 cited

Encoding information into precipitation structures

Kirsten Martens, Ioana Bena, Michel Droz +1

Material design at submicron scales would be profoundly affected if the formation of precipitation patterns could be easily controlled. It would allow the direct building of bulk s…

cond-mat.stat-mech200647 cited

Intensive thermodynamic parameters in nonequilibrium systems

Eric Bertin, Kirsten Martens, Olivier Dauchot +1

Considering a broad class of steady-state nonequilibrium systems for which some additive quantities are conserved by the dynamics, we introduce from a statistical approach intensiv…

cond-mat.stat-mech2006

Boltzmann and hydrodynamic description for self-propelled particles

Eric Bertin, Michel Droz, Guillaume Gregoire

We study analytically the emergence of spontaneous collective motion within large bidimensional groups of self-propelled particles with noisy local interactions, a schematic model…

cond-mat.stat-mech2005

Definition and relevance of nonequilibrium intensive thermodynamic parameters

Eric Bertin, Olivier Dauchot, Michel Droz

We show that intensive thermodynamic parameters associated to additive conserved quantities can be naturally defined from a statistical approach in far-from-equilibrium steady-stat…

cond-mat.stat-mech2005

Stationary state of a heated granular gas: fate of the usual H-functional

Ioana Bena, Francois Coppex, Michel Droz +3

We consider the characterization of the nonequilibrium stationary state of a randomly-driven granular gas in terms of an entropy-production based variational formulation. Enforcing…