International audienceMagnetotactic swimmers tend to align along magnetic field lines against stochastic reorientations. We show that the swimming strategy, e.g., active Brownian motion versus run-and-tumble dynamics, strongly affects the orientation statistics. The latter can exhibit a velocity condensation whereby the alignment probability density diverges. As a consequence, we find that the swimming strategy affects the nature of the phase transition to collective motion, indicating that Lévy run-and-tumble walks can outperform active Brownian processes as strategies to trigger collective behavior
International audienceActive Brownian particles (ABPs, such as self-phoretic colloids) swim at fixed...
Active matter exhibits remarkable collective behaviour in which flows, continuously generated by act...
In this work we introduce a stochastic model to describe directional changes in the movement of swim...
International audienceMagnetotactic swimmers tend to align along magnetic field lines against stocha...
International audienceThe movement of microswimmers is often described by active Brownian particle m...
We investigate the collective behavior of magnetic swimmers, which are suspended in a Poiseuille flo...
The fluctuations experienced by magnetic microswimmers in a magnetic field often have non-thermal co...
We study the phase behavior of polar active Brownian particles moving in twospatial dimensions and i...
Author summary In this paper, we propose a modified Active Brownian particle model to describe bacte...
International audienceThe swimming of bacteria provides insight into propulsion and steering under t...
We investigatethe swimming motion of rod-shaped magnetotactic bacteriaaffiliated with the {it Nitros...
Small organisms (e.g., bacteria) and artificial microswimmers move due to a combination of active sw...
Individually propulsive catalytic Janus particle swimmers are observed to self-assemble into aggrega...
Small organisms (e.g., bacteria) and artificial microswimmers move due to a combination of active sw...
International audienceActive Brownian particles (ABPs, such as self-phoretic colloids) swim at fixed...
Active matter exhibits remarkable collective behaviour in which flows, continuously generated by act...
In this work we introduce a stochastic model to describe directional changes in the movement of swim...
International audienceMagnetotactic swimmers tend to align along magnetic field lines against stocha...
International audienceThe movement of microswimmers is often described by active Brownian particle m...
We investigate the collective behavior of magnetic swimmers, which are suspended in a Poiseuille flo...
The fluctuations experienced by magnetic microswimmers in a magnetic field often have non-thermal co...
We study the phase behavior of polar active Brownian particles moving in twospatial dimensions and i...
Author summary In this paper, we propose a modified Active Brownian particle model to describe bacte...
International audienceThe swimming of bacteria provides insight into propulsion and steering under t...
We investigatethe swimming motion of rod-shaped magnetotactic bacteriaaffiliated with the {it Nitros...
Small organisms (e.g., bacteria) and artificial microswimmers move due to a combination of active sw...
Individually propulsive catalytic Janus particle swimmers are observed to self-assemble into aggrega...
Small organisms (e.g., bacteria) and artificial microswimmers move due to a combination of active sw...
International audienceActive Brownian particles (ABPs, such as self-phoretic colloids) swim at fixed...
Active matter exhibits remarkable collective behaviour in which flows, continuously generated by act...
In this work we introduce a stochastic model to describe directional changes in the movement of swim...