Studies of active matter, from molecular assemblies to animal groups, have revealed two broad classes of behaviour: a tendency to align yields orientational order and collective motion, whereas particle repulsion leads to self-trapping and motility-induced phase separation. Here we report a third class of behaviour: orientational interactions that produce active phase separation. Combining theory and experiments on self-propelled Janus colloids, we show that stronger repulsion on the rear than on the front of these particles produces non-reciprocal torques that reorient particle motion towards high-density regions. Particles thus self-propel towards crowded areas, which leads to phase separation. Clusters remain fluid and exhibit fast parti...
Self-propelled colloids are microscopic entities of typical size between a few nanometers to a few m...
Active colloids exhibit persistent motion, which can lead to motility-induced phase separation (MIPS...
We study a system of purely repulsive spherical self-propelled particles in the minimal setup induci...
© 2021, The Author(s), under exclusive licence to Springer Nature Limited.Studies of active matter, ...
5 pages, 5 figuresInternational audienceSwitching on high activity in a relatively dense system of a...
We study the phase behavior of polar active Brownian particles moving in two-spatial dimensions and ...
We study the phase behavior of polar active Brownian particles moving in twospatial dimensions and i...
International audienceAbstract Whereas self-propelled hard discs undergo motility-induced phase sepa...
We study experimentally and numerically a (quasi) two dimensional colloidal suspension of self-prope...
Off-lattice active Brownian particles form clusters and undergo phase separation even in the absence...
Off-lattice active Brownian particles form clusters and undergo phase separation even in the absence...
Murmurations of birds, schools of fish, and herds of migrating animals are macroscale examples of se...
To study the role of torque in motility-induced phase separation (MIPS), we simulate a system of sel...
Combining model experiments and theory, we investigate the dense phases of polar active matter beyon...
To study the role of torque in motility-induced phase separation (MIPS), we simulate a system of sel...
Self-propelled colloids are microscopic entities of typical size between a few nanometers to a few m...
Active colloids exhibit persistent motion, which can lead to motility-induced phase separation (MIPS...
We study a system of purely repulsive spherical self-propelled particles in the minimal setup induci...
© 2021, The Author(s), under exclusive licence to Springer Nature Limited.Studies of active matter, ...
5 pages, 5 figuresInternational audienceSwitching on high activity in a relatively dense system of a...
We study the phase behavior of polar active Brownian particles moving in two-spatial dimensions and ...
We study the phase behavior of polar active Brownian particles moving in twospatial dimensions and i...
International audienceAbstract Whereas self-propelled hard discs undergo motility-induced phase sepa...
We study experimentally and numerically a (quasi) two dimensional colloidal suspension of self-prope...
Off-lattice active Brownian particles form clusters and undergo phase separation even in the absence...
Off-lattice active Brownian particles form clusters and undergo phase separation even in the absence...
Murmurations of birds, schools of fish, and herds of migrating animals are macroscale examples of se...
To study the role of torque in motility-induced phase separation (MIPS), we simulate a system of sel...
Combining model experiments and theory, we investigate the dense phases of polar active matter beyon...
To study the role of torque in motility-induced phase separation (MIPS), we simulate a system of sel...
Self-propelled colloids are microscopic entities of typical size between a few nanometers to a few m...
Active colloids exhibit persistent motion, which can lead to motility-induced phase separation (MIPS...
We study a system of purely repulsive spherical self-propelled particles in the minimal setup induci...