We present a study of the hydrodynamics of an active particle, a model squirmer, in an envi- ronment with a broken rotational symmetry: a nematic liquid crystal. By combining simulations with analytic calculations, we show that the hydrodynamic coupling between the squirmer flow field and liquid crystalline director can lead to re-orientation of the swimmers. The preferred orientation depends on the exact details of the squirmer flow field. In a steady state, pushers are shown to swim parallel with the nematic director while pullers swim perpendicular to the nematic director. This behaviour arises solely from hydrodynamic coupling between the squirmer flow field and anisotropic viscosities of the host fluid. Our results suggest that an anis...
We report curling self-propulsion in aqueous emulsions of common mesogenic compounds. Nematic liquid...
In this work we investigate the interplay between flow and boundary condition effects on the orienta...
The squirmer is a simple yet instructive model for microswimmers, which employs an effective slip ve...
We present a study of the hydrodynamics of an active particle, a model squirmer, in an envi- ronment...
We study the dynamics of a squirmer in a nematic liquid crystal using the multiparticle collision dy...
We analyze a nonlinear PDE system describing the motion of a microswimmer in a nematic liquid crysta...
The swimming behavior of self-propelled microorganisms is studied by particle-based mesoscale simula...
The spatiotemporal dynamics in systems of active self-propelled particles is controlled by the propu...
We run numerical simulations of strongly confined suspensions of model spherical swimmers called “sq...
Microswimmers or active elements, such as bacteria and active filaments, have an elongated shape, wh...
Hydrodynamic interactions are fundamental for the dynamics of swimming self-propelled particles. Spe...
Analytic formulations of elementary flow field profiles in weakly anisotropic nematic fluid are dete...
Analytic formulations of elementary flow field profiles in weakly anisotropic nematic fluid are dete...
ABSTRACT: In this work we investigate the interplay between flow and boundary condition effects on t...
Many microorganisms take a chiral path while swimming in an ambient fluid. In this paper we study th...
We report curling self-propulsion in aqueous emulsions of common mesogenic compounds. Nematic liquid...
In this work we investigate the interplay between flow and boundary condition effects on the orienta...
The squirmer is a simple yet instructive model for microswimmers, which employs an effective slip ve...
We present a study of the hydrodynamics of an active particle, a model squirmer, in an envi- ronment...
We study the dynamics of a squirmer in a nematic liquid crystal using the multiparticle collision dy...
We analyze a nonlinear PDE system describing the motion of a microswimmer in a nematic liquid crysta...
The swimming behavior of self-propelled microorganisms is studied by particle-based mesoscale simula...
The spatiotemporal dynamics in systems of active self-propelled particles is controlled by the propu...
We run numerical simulations of strongly confined suspensions of model spherical swimmers called “sq...
Microswimmers or active elements, such as bacteria and active filaments, have an elongated shape, wh...
Hydrodynamic interactions are fundamental for the dynamics of swimming self-propelled particles. Spe...
Analytic formulations of elementary flow field profiles in weakly anisotropic nematic fluid are dete...
Analytic formulations of elementary flow field profiles in weakly anisotropic nematic fluid are dete...
ABSTRACT: In this work we investigate the interplay between flow and boundary condition effects on t...
Many microorganisms take a chiral path while swimming in an ambient fluid. In this paper we study th...
We report curling self-propulsion in aqueous emulsions of common mesogenic compounds. Nematic liquid...
In this work we investigate the interplay between flow and boundary condition effects on the orienta...
The squirmer is a simple yet instructive model for microswimmers, which employs an effective slip ve...