Using lattice Boltzmann simulations we study the hydrodynamics of an active spherical particle near a no-slip wall. We develop a computational model for an active Janus particle, by considering different and independent mobilities on the two hemispheres and compare the behaviour to a standard squirmer model. We show that the topology of the far-field hydrodynamic nature of the active Janus particle is similar to the standard squirmer model, but in the near-field the hydrodynamics differ. In order to study how the near-field effects affect the interaction between the particle and a flat wall, we compare the behaviour of a Janus swimmer and a squirmer near a no-slip surface via extensive numerical simulations. Our results show generally a goo...
The spatiotemporal dynamics in systems of active self-propelled particles is controlled by the propu...
The motion of microorganisms presents interesting and diffcult problems ranging from mechanisms of p...
Microswimmers or active elements, such as bacteria and active filaments, have an elongated shape, wh...
Using lattice Boltzmann simulations we study the hydrodynamics of an active spherical particle near ...
International audienceUsing lattice Boltzmann simulations we study the hydrodynamics of an active sp...
The squirmer is a simple yet instructive model for microswimmers, which employs an effective slip ve...
Chemically active Janus particles generate tangential concentration gradients along their surface fo...
International audienceWe theoretically study the self-propulsion of a laser-heated Janus particle in...
The hydrodynamic properties of a squirmer type of self-propelled particle in a simple shear flow are...
Self-propelled particles have been experimentally shown to orbit spherical obstacles and move along ...
The swimming behavior of self-propelled microorganisms is studied by particle-based mesoscale simula...
Both biological swimming microorganisms and artificial active particles capable of propulsion have r...
We investigate the equilibrium orientation and adsorption process of a single, ellipsoidal Janus par...
Chemically active Janus particles sustain non-equilibrium spatial variations in the chemical composi...
The boundary behavior of axisymmetric microswimming squirmers is theoretically explored within an in...
The spatiotemporal dynamics in systems of active self-propelled particles is controlled by the propu...
The motion of microorganisms presents interesting and diffcult problems ranging from mechanisms of p...
Microswimmers or active elements, such as bacteria and active filaments, have an elongated shape, wh...
Using lattice Boltzmann simulations we study the hydrodynamics of an active spherical particle near ...
International audienceUsing lattice Boltzmann simulations we study the hydrodynamics of an active sp...
The squirmer is a simple yet instructive model for microswimmers, which employs an effective slip ve...
Chemically active Janus particles generate tangential concentration gradients along their surface fo...
International audienceWe theoretically study the self-propulsion of a laser-heated Janus particle in...
The hydrodynamic properties of a squirmer type of self-propelled particle in a simple shear flow are...
Self-propelled particles have been experimentally shown to orbit spherical obstacles and move along ...
The swimming behavior of self-propelled microorganisms is studied by particle-based mesoscale simula...
Both biological swimming microorganisms and artificial active particles capable of propulsion have r...
We investigate the equilibrium orientation and adsorption process of a single, ellipsoidal Janus par...
Chemically active Janus particles sustain non-equilibrium spatial variations in the chemical composi...
The boundary behavior of axisymmetric microswimming squirmers is theoretically explored within an in...
The spatiotemporal dynamics in systems of active self-propelled particles is controlled by the propu...
The motion of microorganisms presents interesting and diffcult problems ranging from mechanisms of p...
Microswimmers or active elements, such as bacteria and active filaments, have an elongated shape, wh...