The properties of microswimmer dumbbells composed of pusher–puller pairs are investigated by mesoscale hydrodynamic simulations employing the multiparticle collision dynamics approach for the fluid. An individual microswimmer is represented by a squirmer, and various active-stress combinations in a dumbbell are considered. The squirmers are connected by a bond, which does not impose any geometrical restriction on the individual rotational motion. Our simulations reveal a strong influence of the squirmers’ flow fields on the orientation of their propulsion directions, their fluctuations, and the swimming behavior of a dumbbell. The properties of pusher–puller pairs with an equal magnitude of the active stresses depend only weakly on the stre...
We run numerical simulations of strongly confined suspensions of model spherical swimmers called "sq...
We present a study of the hydrodynamics of an active particle, a model squirmer, in an envi- ronment...
Hydrodynamic interactions are crucial for determining the cooperative behavior ofmicroswimmers at lo...
The properties of microswimmer dumbbells composed of pusher–puller pairs are investigated by mesosca...
Hydrodynamic interactions are fundamental for the dynamics of swimming self-propelled particles. Spe...
A squirmer model achieves propulsion by generating surface squirming velocities. This model has been...
The spatiotemporal dynamics in systems of active self-propelled particles is controlled by the propu...
Active matter systems are continuously consuming energy from the environment to achieve different pu...
The swimming behavior of self-propelled microorganisms is studied by particle-based mesoscale simula...
Microswimmers or active elements, such as bacteria and active filaments, have an elongated shape, wh...
Microswimmers often exhibit surprising patterns due to the nonequilibrium nature of their dynamics. ...
We present the results of hydrodynamic simulations using the method of multi-particle collision dyna...
We perform hydrodynamic simulations using the method of multi-particle collision dynamics and a theo...
Active dumbbell suspensions constitute one of the simplest model systems for collective swimming at ...
We study the orientational and translational dynamics of spherical microswimmers trapped at fluid in...
We run numerical simulations of strongly confined suspensions of model spherical swimmers called "sq...
We present a study of the hydrodynamics of an active particle, a model squirmer, in an envi- ronment...
Hydrodynamic interactions are crucial for determining the cooperative behavior ofmicroswimmers at lo...
The properties of microswimmer dumbbells composed of pusher–puller pairs are investigated by mesosca...
Hydrodynamic interactions are fundamental for the dynamics of swimming self-propelled particles. Spe...
A squirmer model achieves propulsion by generating surface squirming velocities. This model has been...
The spatiotemporal dynamics in systems of active self-propelled particles is controlled by the propu...
Active matter systems are continuously consuming energy from the environment to achieve different pu...
The swimming behavior of self-propelled microorganisms is studied by particle-based mesoscale simula...
Microswimmers or active elements, such as bacteria and active filaments, have an elongated shape, wh...
Microswimmers often exhibit surprising patterns due to the nonequilibrium nature of their dynamics. ...
We present the results of hydrodynamic simulations using the method of multi-particle collision dyna...
We perform hydrodynamic simulations using the method of multi-particle collision dynamics and a theo...
Active dumbbell suspensions constitute one of the simplest model systems for collective swimming at ...
We study the orientational and translational dynamics of spherical microswimmers trapped at fluid in...
We run numerical simulations of strongly confined suspensions of model spherical swimmers called "sq...
We present a study of the hydrodynamics of an active particle, a model squirmer, in an envi- ronment...
Hydrodynamic interactions are crucial for determining the cooperative behavior ofmicroswimmers at lo...