International audienceWe explore the emergence of nonequilibrium collective motion in disordered non-thermal active matter when persistent motion and crowding effects compete, using simulations of a two-dimensional model of size polydisperse self-propelled particles. In stark contrast with monodisperse systems, we find that polydispersity stabilizes a homogeneous active liquid at arbitrary large persistence times, characterized by remarkable velocity correlations and irregular turbulent flows. For all persistence values, the active fluid undergoes a nonequilibrium glass transition at large density. This is accompanied by collective motion, whose nature evolves from near-equilibrium spatially heterogeneous dynamics at small persistence, to a...
http://arxiv.org/abs/0901.3649International audienceA mode-coupling theory for the slow single-parti...
International audienceThe effects of quenched disorder on a single and many active run-and-tumble pa...
Disordered many-particle systems have remarkable mechanical and transport properties, whose theoreti...
International audienceWe explore the emergence of nonequilibrium collective motion in disordered non...
We explore the emergence of nonequilibrium collective motion in disordered non-thermal active matter...
5 pages; v2 accepted for publication in Phys. Rev. LettInternational audienceThe emergence of partic...
Abstract –The structural and dynamical properties of suspensions of self-propelled Brownian particle...
We present a detailed study of the large-scale collective properties of self-propelled particles (SP...
Active matter deals with systems whose particles consume energy at the individual level in order to ...
Recent experiments have demonstrated that the deviation of the single-particle displacement distribu...
Recent experiments have demonstrated that the deviation of the single-particle displacement distribu...
Recent experiments have demonstrated that the deviation of the single-particle displacement distribu...
Self-propelled particles (SPPs) are particles who, by themselves, are able to generate persistent mo...
The structural and dynamical properties of suspensions of self-propelled Brownian particles of spher...
The perplexing and intriguing world of biological systems has inaugurated a new research field in st...
http://arxiv.org/abs/0901.3649International audienceA mode-coupling theory for the slow single-parti...
International audienceThe effects of quenched disorder on a single and many active run-and-tumble pa...
Disordered many-particle systems have remarkable mechanical and transport properties, whose theoreti...
International audienceWe explore the emergence of nonequilibrium collective motion in disordered non...
We explore the emergence of nonequilibrium collective motion in disordered non-thermal active matter...
5 pages; v2 accepted for publication in Phys. Rev. LettInternational audienceThe emergence of partic...
Abstract –The structural and dynamical properties of suspensions of self-propelled Brownian particle...
We present a detailed study of the large-scale collective properties of self-propelled particles (SP...
Active matter deals with systems whose particles consume energy at the individual level in order to ...
Recent experiments have demonstrated that the deviation of the single-particle displacement distribu...
Recent experiments have demonstrated that the deviation of the single-particle displacement distribu...
Recent experiments have demonstrated that the deviation of the single-particle displacement distribu...
Self-propelled particles (SPPs) are particles who, by themselves, are able to generate persistent mo...
The structural and dynamical properties of suspensions of self-propelled Brownian particles of spher...
The perplexing and intriguing world of biological systems has inaugurated a new research field in st...
http://arxiv.org/abs/0901.3649International audienceA mode-coupling theory for the slow single-parti...
International audienceThe effects of quenched disorder on a single and many active run-and-tumble pa...
Disordered many-particle systems have remarkable mechanical and transport properties, whose theoreti...