We analyze the effect of confining rigid and elastic boundaries on the motility of a model dipolar microswimmer. Flexible boundaries are deformed by the velocity field of the swimmer in such a way that the motility of both extensile and contractile swimmers is enhanced. The magnitude of the increase in swimming velocity is controlled by the ratio of the swimmer-advection and elastic time scales, and the dipole moment of the swimmer. We explain our results by considering swimming between inclined rigid boundaries
In this dissertation, the effects of elasticity on hydrodynamic interactions at small scales are inv...
We discuss a reduced model to compute the motion of slender swimmers which propel themselves by prop...
It has long been known that some microswimmers seem to swim counter-intuitively faster when the visc...
In this work we consider the following question: given a mechanical microswimming mechanism, does in...
Synthetic microswimmers are envisioned to be useful in numerous applications, many of which occur in...
In this analytical study we demonstrate the richness of behaviour exhibited by bead-spring micro-swi...
We study two microswimmers consisting of a spherical rigid head and a passive elastic tail. In the f...
The influence of a plane boundary on low-Reynolds-number swimmers has frequently been studied using ...
International audienceWe discuss a reduced model to compute the motion of slender swimmerswhich prop...
We analyzed the effect of confinement on the effective diffusion of a run-and-tumble E. coli-like fl...
We analyzed the effect of confinement on the effective diffusion of a run-and-tumble E. coli-like fl...
Few simulations exist for microswimmers near deformable interfaces. Here, we present numerical simul...
The role of passive body dynamics on the kinematics of swimming micro-organisms in complex fluids is...
Whether they be spermatozoa in cervical mucus, or {\it C. elegans} in wet soil, swimming cells often...
It has long been known that some microswimmers seem to swim counter-intuitively faster when the visc...
In this dissertation, the effects of elasticity on hydrodynamic interactions at small scales are inv...
We discuss a reduced model to compute the motion of slender swimmers which propel themselves by prop...
It has long been known that some microswimmers seem to swim counter-intuitively faster when the visc...
In this work we consider the following question: given a mechanical microswimming mechanism, does in...
Synthetic microswimmers are envisioned to be useful in numerous applications, many of which occur in...
In this analytical study we demonstrate the richness of behaviour exhibited by bead-spring micro-swi...
We study two microswimmers consisting of a spherical rigid head and a passive elastic tail. In the f...
The influence of a plane boundary on low-Reynolds-number swimmers has frequently been studied using ...
International audienceWe discuss a reduced model to compute the motion of slender swimmerswhich prop...
We analyzed the effect of confinement on the effective diffusion of a run-and-tumble E. coli-like fl...
We analyzed the effect of confinement on the effective diffusion of a run-and-tumble E. coli-like fl...
Few simulations exist for microswimmers near deformable interfaces. Here, we present numerical simul...
The role of passive body dynamics on the kinematics of swimming micro-organisms in complex fluids is...
Whether they be spermatozoa in cervical mucus, or {\it C. elegans} in wet soil, swimming cells often...
It has long been known that some microswimmers seem to swim counter-intuitively faster when the visc...
In this dissertation, the effects of elasticity on hydrodynamic interactions at small scales are inv...
We discuss a reduced model to compute the motion of slender swimmers which propel themselves by prop...
It has long been known that some microswimmers seem to swim counter-intuitively faster when the visc...