When particles move at a constant speed and have the tendency to align their directions of motion, ordered large-scale movement can emerge despite significant levels of noise. Many variants of this model of self-propelled particles have been studied to explain the coherent motion of groups of birds, fish or microbes. Here, we generalize the aligning interaction rule of many classical self-propelled particle models to the case where particles after the interaction tend to move in slightly different directions away from each other, as characterized by a deflection angle. We map out the resulting phase diagram and find that, in sufficiently dense systems, small local disalignment can lead to higher global alignment of particle movement directi...
Collective dynamics is something that can be found in nature on macro and micro scale. Since the 90s...
International audienceAbstract Whereas self-propelled hard discs undergo motility-induced phase sepa...
We study a system of self-propelled particles which interact with their neighbors via alignment and ...
International audienceWhen particles move at a constant speed and have the tendency to align their d...
A large-scale system consisting of self-propelled particles, moving under the directional alignment ...
Abstract Since the pioneering work by Vicsek and his collaborators on the motion of self-propelled p...
We study the phase behavior of polar active Brownian particles moving in two-spatial dimensions and ...
Moving animal groups, such as flocks of birds or schools of fish, exhibit a varity of self-organized...
We study a system of purely repulsive spherical self-propelled particles in the minimal setup induci...
We study a system of purely repulsive spherical self-propelled particles in the minimal setup induci...
We study the phase behavior of polar active Brownian particles moving in twospatial dimensions and i...
Abstract. Systems of self-propelled particles (SPP) interacting by a velocity alignment mechanism in...
Abstract. We argue that the model introduced by Vicsek et al. in which self-propelled particles alig...
We study the collective motion of a large set of self-propelled particles subject to voter-like inte...
International audienceWe study a system of self-propelled particles which interact with their neighb...
Collective dynamics is something that can be found in nature on macro and micro scale. Since the 90s...
International audienceAbstract Whereas self-propelled hard discs undergo motility-induced phase sepa...
We study a system of self-propelled particles which interact with their neighbors via alignment and ...
International audienceWhen particles move at a constant speed and have the tendency to align their d...
A large-scale system consisting of self-propelled particles, moving under the directional alignment ...
Abstract Since the pioneering work by Vicsek and his collaborators on the motion of self-propelled p...
We study the phase behavior of polar active Brownian particles moving in two-spatial dimensions and ...
Moving animal groups, such as flocks of birds or schools of fish, exhibit a varity of self-organized...
We study a system of purely repulsive spherical self-propelled particles in the minimal setup induci...
We study a system of purely repulsive spherical self-propelled particles in the minimal setup induci...
We study the phase behavior of polar active Brownian particles moving in twospatial dimensions and i...
Abstract. Systems of self-propelled particles (SPP) interacting by a velocity alignment mechanism in...
Abstract. We argue that the model introduced by Vicsek et al. in which self-propelled particles alig...
We study the collective motion of a large set of self-propelled particles subject to voter-like inte...
International audienceWe study a system of self-propelled particles which interact with their neighb...
Collective dynamics is something that can be found in nature on macro and micro scale. Since the 90s...
International audienceAbstract Whereas self-propelled hard discs undergo motility-induced phase sepa...
We study a system of self-propelled particles which interact with their neighbors via alignment and ...