We investigate the steady-state properties of an active fluid modelled as an assembly of soft repulsive spheres subjected to Gaussian coloured noise. Such a noise captures one of the salient aspects of active particles, namely the persistence of their motion and determines a variety of novel features with respect to familiar passive fluids. We show that within the so-called multidimensional unified coloured noise approximation, recently introduced in the field of active matter, the model can be treated by methods similar to those employed in the study of standard molecular fluids. The system shows a tendency of the particles to aggregate even in the presence of purely repulsive forces because the combined action of coloured noise and intera...
We consider the pressure in the steady-state regime of three stochastic models characterized by self...
We study a system of non-interacting active particles, propelled by colored noises, characterized by...
A lattice model is used to study repulsive active particles at a planar surface. A rejection-free K...
We investigate the steady-state properties of an active fluid modelled as an assembly of soft repuls...
We derive the stationary probability distribution for a non-equilibrium system composed by an arbitr...
We consider the steady-state behavior of pairs of active particles having different persistence time...
We present a stochastic description of a model of N mutually interacting active particles in the pre...
The equations of motion of active systems can be modeled in terms of Ornstein–Uhlenbeck processe...
We employ statistical field theory techniques for coarse graining the steady-state properties of act...
We study a two-dimensional system composed by Active Brownian Particles (ABPs), focusing on the onse...
We consider the effect of geometric confinement on the steady-state properties of a one-dimensional ...
Active colloids exhibit persistent motion, which can lead to motility-induced phase separation (MIPS...
We study a system of interacting active particles, propelled by colored noises, characterized by an ...
The dynamic behavior of flocks, swarms, and schools is an extraordinary and striking phenomena in th...
We investigate the effect of self-propulsion on a mean-field order-disorder transition. Starting fro...
We consider the pressure in the steady-state regime of three stochastic models characterized by self...
We study a system of non-interacting active particles, propelled by colored noises, characterized by...
A lattice model is used to study repulsive active particles at a planar surface. A rejection-free K...
We investigate the steady-state properties of an active fluid modelled as an assembly of soft repuls...
We derive the stationary probability distribution for a non-equilibrium system composed by an arbitr...
We consider the steady-state behavior of pairs of active particles having different persistence time...
We present a stochastic description of a model of N mutually interacting active particles in the pre...
The equations of motion of active systems can be modeled in terms of Ornstein–Uhlenbeck processe...
We employ statistical field theory techniques for coarse graining the steady-state properties of act...
We study a two-dimensional system composed by Active Brownian Particles (ABPs), focusing on the onse...
We consider the effect of geometric confinement on the steady-state properties of a one-dimensional ...
Active colloids exhibit persistent motion, which can lead to motility-induced phase separation (MIPS...
We study a system of interacting active particles, propelled by colored noises, characterized by an ...
The dynamic behavior of flocks, swarms, and schools is an extraordinary and striking phenomena in th...
We investigate the effect of self-propulsion on a mean-field order-disorder transition. Starting fro...
We consider the pressure in the steady-state regime of three stochastic models characterized by self...
We study a system of non-interacting active particles, propelled by colored noises, characterized by...
A lattice model is used to study repulsive active particles at a planar surface. A rejection-free K...