peer reviewedActive work measures how far the local self-forcing of active particles translates into real motion. Using population Monte Carlo methods, we investigate large deviations in the active work for repulsive active Brownian disks Minimizing the active work generically results in dynamical arrest; in contrast, despite the lack of aligning interactions, trajectories of high active work correspond to a collectively moving, aligned state. We use heuristic and analytic arguments to explain the origin of dynamical phase transitions separating the arrested, typical, and aligned regimes
We investigate a two-dimensional system of active particles confined to a narrow annular domain. Des...
One of the most intriguing phenomena in active matter has been the gas-liquid like motility induced...
We study a system of interacting active particles, propelled by colored noises, characterized by an ...
We analyze collective motion that occurs during rare (large deviation) events in systems of active p...
Active Brownian particles are a model system that allows physicists to understand the principles of ...
Minimal models of active Brownian colloids consisting of self-propelled spherical par- ticles with p...
Systems of independent active particles embedded into a fluctuating environment are relevant to many...
A pedagogical introduction to the analytical treatment of the collective behavior of active (self-pr...
Abstract Active fluids operate by constantly dissipating energy at the particle level...
International audienceWe study non-equilibrium phases for interacting two-dimensional self-propelled...
Self-propelled colloids are microscopic entities of typical size between a few nanometers to a few m...
We study the statistics, in stationary conditions, of the work Wτ done by the active force in differ...
We study the phase behavior of polar active Brownian particles moving in two-spatial dimensions and ...
We review theoretical models of individual motility as well as collective dynamics and pattern forma...
Collective behaviour is a phenomenon that often occurs in systems of many interacting individuals. C...
We investigate a two-dimensional system of active particles confined to a narrow annular domain. Des...
One of the most intriguing phenomena in active matter has been the gas-liquid like motility induced...
We study a system of interacting active particles, propelled by colored noises, characterized by an ...
We analyze collective motion that occurs during rare (large deviation) events in systems of active p...
Active Brownian particles are a model system that allows physicists to understand the principles of ...
Minimal models of active Brownian colloids consisting of self-propelled spherical par- ticles with p...
Systems of independent active particles embedded into a fluctuating environment are relevant to many...
A pedagogical introduction to the analytical treatment of the collective behavior of active (self-pr...
Abstract Active fluids operate by constantly dissipating energy at the particle level...
International audienceWe study non-equilibrium phases for interacting two-dimensional self-propelled...
Self-propelled colloids are microscopic entities of typical size between a few nanometers to a few m...
We study the statistics, in stationary conditions, of the work Wτ done by the active force in differ...
We study the phase behavior of polar active Brownian particles moving in two-spatial dimensions and ...
We review theoretical models of individual motility as well as collective dynamics and pattern forma...
Collective behaviour is a phenomenon that often occurs in systems of many interacting individuals. C...
We investigate a two-dimensional system of active particles confined to a narrow annular domain. Des...
One of the most intriguing phenomena in active matter has been the gas-liquid like motility induced...
We study a system of interacting active particles, propelled by colored noises, characterized by an ...