We study the effects of stochastic birth and death processes on the structural phases of systems of active and passive Brownian particles subject to volume exclusion. The total number of particles in the system is a fluctuating quantity, determined by the birth and death parameters, and on the activity of the particles. As the birth and death parameters are varied we find liquid, hexatic and solid phases. For passive particles these phases are found to be spatially homogeneous. For active particles motility-induced phase separation (co-existing hexatic and liquid phases) occurs for large activity and sufficiently small birth rates. We also observe a re-entrant transition to the hexatic phase when the birth rate is increased. This results fr...
In this thesis we study emergent statistical properties of many-particle systems of self-propelled p...
We establish the complete phase diagram of self-propelled hard disks in two spatial dimensions from ...
Abstract –The structural and dynamical properties of suspensions of self-propelled Brownian particle...
We study the effects of stochastic birth and death processes on the structural phases of systems of ...
Trabajo presentado en el IFISC Poster Party (online).-- The IFISC Poster Party is an annual activit...
The steady state and phase ordering kinetics in a pure active Brownian particle system are studied i...
Abstract: Kinetic approach to modelling of phase transition in solids at their fluctuation...
5 pages, 5 figures, SMInternational audienceAs a result of nonequilibrium forces, purely repulsive s...
In this report we present our work on athermal phase separation of active Brownian particles through...
Motility-induced phase separation (MIPS), the phenomenon in which purely repulsive active particles ...
Self-propelled colloids are microscopic entities of typical size between a few nanometers to a few m...
The aim of this paper is to discuss the mathematical modeling of Brownian active particle systems, a...
International audienceRecently, we characterized the complete phase transition diagram in the phgr-P...
In this thesis we study emergent statistical properties of many-particle systems of self-propelled p...
We establish the complete phase diagram of self-propelled hard disks in two spatial dimensions from ...
Abstract –The structural and dynamical properties of suspensions of self-propelled Brownian particle...
We study the effects of stochastic birth and death processes on the structural phases of systems of ...
Trabajo presentado en el IFISC Poster Party (online).-- The IFISC Poster Party is an annual activit...
The steady state and phase ordering kinetics in a pure active Brownian particle system are studied i...
Abstract: Kinetic approach to modelling of phase transition in solids at their fluctuation...
5 pages, 5 figures, SMInternational audienceAs a result of nonequilibrium forces, purely repulsive s...
In this report we present our work on athermal phase separation of active Brownian particles through...
Motility-induced phase separation (MIPS), the phenomenon in which purely repulsive active particles ...
Self-propelled colloids are microscopic entities of typical size between a few nanometers to a few m...
The aim of this paper is to discuss the mathematical modeling of Brownian active particle systems, a...
International audienceRecently, we characterized the complete phase transition diagram in the phgr-P...
In this thesis we study emergent statistical properties of many-particle systems of self-propelled p...
We establish the complete phase diagram of self-propelled hard disks in two spatial dimensions from ...
Abstract –The structural and dynamical properties of suspensions of self-propelled Brownian particle...