5 pages, 5 figures, SMInternational audienceAs a result of nonequilibrium forces, purely repulsive self-propelled particles undergo macrophase separation between a dense and a dilute phase. We present a thorough study of the ordering kinetics of such motility-induced phase separation (MIPS) in active Brownian particles in two dimensions, and we show that it is generically accompanied by microphase separation. The growth of the dense phase follows a law akin to the one of liquid-gas phase separation. However, it is made of a mosaic of hexatic microdomains whose size does not coarsen indefinitely, leaving behind a network of extended topological defects from which microscopic dilute bubbles arise. The characteristic length of these finite-siz...
Suspensions of active Brownian particles (ABPs) undergo motility-induced phase separation (MIPS) ove...
Suspensions of active Brownian particles (ABPs) undergo motility-induced phase separation (MIPS) ove...
Off-lattice active Brownian particles form clusters and undergo phase separation even in the absence...
5 pages, 5 figures, SMInternational audienceAs a result of nonequilibrium forces, purely repulsive s...
5 pages, 5 figures, SMInternational audienceAs a result of nonequilibrium forces, purely repulsive s...
5 pages, 5 figures, SMInternational audienceAs a result of nonequilibrium forces, purely repulsive s...
5 pages, 5 figures, SMInternational audienceAs a result of nonequilibrium forces, purely repulsive s...
As a result of nonequilibrium forces, purely repulsive self-propelled particles undergo macrophase s...
As a result of nonequilibrium forces, purely repulsive self-propelled particles undergo macrophase s...
The aim of this paper is to discuss the mathematical modeling of Brownian active particle systems, a...
The aim of this paper is to discuss the mathematical modeling of Brownian active particle systems, a...
We study a two-dimensional system composed by Active Brownian Particles (ABPs), focusing on the onse...
Motility-induced phase separation (MIPS), the phenomenon in which purely repulsive active particles ...
Motility-induced phase separation (MIPS), the phenomenon in which purely repulsive active particles ...
Recently, there has been much interest in activity-induced phase separations in concentrated suspens...
Suspensions of active Brownian particles (ABPs) undergo motility-induced phase separation (MIPS) ove...
Suspensions of active Brownian particles (ABPs) undergo motility-induced phase separation (MIPS) ove...
Off-lattice active Brownian particles form clusters and undergo phase separation even in the absence...
5 pages, 5 figures, SMInternational audienceAs a result of nonequilibrium forces, purely repulsive s...
5 pages, 5 figures, SMInternational audienceAs a result of nonequilibrium forces, purely repulsive s...
5 pages, 5 figures, SMInternational audienceAs a result of nonequilibrium forces, purely repulsive s...
5 pages, 5 figures, SMInternational audienceAs a result of nonequilibrium forces, purely repulsive s...
As a result of nonequilibrium forces, purely repulsive self-propelled particles undergo macrophase s...
As a result of nonequilibrium forces, purely repulsive self-propelled particles undergo macrophase s...
The aim of this paper is to discuss the mathematical modeling of Brownian active particle systems, a...
The aim of this paper is to discuss the mathematical modeling of Brownian active particle systems, a...
We study a two-dimensional system composed by Active Brownian Particles (ABPs), focusing on the onse...
Motility-induced phase separation (MIPS), the phenomenon in which purely repulsive active particles ...
Motility-induced phase separation (MIPS), the phenomenon in which purely repulsive active particles ...
Recently, there has been much interest in activity-induced phase separations in concentrated suspens...
Suspensions of active Brownian particles (ABPs) undergo motility-induced phase separation (MIPS) ove...
Suspensions of active Brownian particles (ABPs) undergo motility-induced phase separation (MIPS) ove...
Off-lattice active Brownian particles form clusters and undergo phase separation even in the absence...