We study the effect of different types of fluctuation on the motion of self-propelled particles in two spatial dimensions. We distinguish between passive and active fluctuations. Passive fluctuations (e. g., thermal fluctuations) are independent of the orientation of the particle. In contrast, active ones point parallel or perpendicular to the time dependent orientation of the particle. We derive analytical expressions for the speed and velocity probability density for a generic model of active Brownian particles, which yields an increased probability of low speeds in the presence of active fluctuations in comparison to the case of purely passive fluctuations. As a consequence, we predict sharply peaked Cartesian velocity probability densit...
An active particle converts energy to motion. An active suspension is a population of active particl...
Combining experiments on active colloids, whose propulsion velocity can be controlled via a feedback...
We discuss the dynamics of active Brownian particles (ABPs) in crowded environments through the mean...
We study the effect of different types of fluctuation on the motion of self-propelled particles in t...
We review theoretical models of individual motility as well as collective dynamics and pattern forma...
We consider the influence of active speed fluctuations on the dynamics of a $d$-dimensional active B...
We investigate the stochastic dynamics of one sedimenting active Brownian particle in three dimensio...
We investigate the stochastic dynamics of one sedimenting active Brownian particle in three dimensio...
Recently, it has been discovered that systems of active Brownian particles (APB) at high density org...
Recently, it has been discovered that systems of active Brownian particles (APB) at high density org...
We investigate the dynamics of Brownian particles which are active in the sense that they take up en...
Abstract. We review theoretical models of individual motility as well as collective dynamics and pat...
Dabelow L, Bo S, Eichhorn R. Irreversibility in Active Matter Systems: Fluctuation Theorem and Mutua...
An active particle converts energy to motion. An active suspension is a population of active particl...
We experimentally investigate the work fluctuations of an active Brownian particle (ABP) during its ...
An active particle converts energy to motion. An active suspension is a population of active particl...
Combining experiments on active colloids, whose propulsion velocity can be controlled via a feedback...
We discuss the dynamics of active Brownian particles (ABPs) in crowded environments through the mean...
We study the effect of different types of fluctuation on the motion of self-propelled particles in t...
We review theoretical models of individual motility as well as collective dynamics and pattern forma...
We consider the influence of active speed fluctuations on the dynamics of a $d$-dimensional active B...
We investigate the stochastic dynamics of one sedimenting active Brownian particle in three dimensio...
We investigate the stochastic dynamics of one sedimenting active Brownian particle in three dimensio...
Recently, it has been discovered that systems of active Brownian particles (APB) at high density org...
Recently, it has been discovered that systems of active Brownian particles (APB) at high density org...
We investigate the dynamics of Brownian particles which are active in the sense that they take up en...
Abstract. We review theoretical models of individual motility as well as collective dynamics and pat...
Dabelow L, Bo S, Eichhorn R. Irreversibility in Active Matter Systems: Fluctuation Theorem and Mutua...
An active particle converts energy to motion. An active suspension is a population of active particl...
We experimentally investigate the work fluctuations of an active Brownian particle (ABP) during its ...
An active particle converts energy to motion. An active suspension is a population of active particl...
Combining experiments on active colloids, whose propulsion velocity can be controlled via a feedback...
We discuss the dynamics of active Brownian particles (ABPs) in crowded environments through the mean...