We propose a hydrodynamic model for a spheroidal microswimmer with two tangential surface velocity modes. This model is analytically solvable and reduces to Lighthill's and Blake's spherical squirmer model in the limit of equal major and minor semi-axes. Furthermore, we present an implementation of such a spheroidal squirmer by means of particle-based mesoscale hydrodynamics simulations using the multiparticle collision dynamics approach. We investigate its properties as well as the scattering of two spheroidal squirmers in a slit geometry. Thereby we find a stable fixed point, where two pullers swim cooperatively forming a wedge-like conformation with a small constant angle
We present a theoretical study of the behaviour of two active particles under the action of harmonic...
We perform hydrodynamic simulations using the method of multi-particle collision dynamics and a theo...
The squirmer is a simple yet instructive model for microswimmers, which employs an effective slip ve...
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...
Microswimmers or active elements, such as bacteria and active filaments, have an elongated shape, wh...
The boundary behavior of axisymmetric microswimming squirmers is theoretically explored within an in...
We present the results of hydrodynamic simulations using the method of multi-particle collision dyna...
This dissertation contains original research on a range of problems involving the locomotion of diff...
Both biological swimming microorganisms and artificial active particles capable of propulsion have r...
A striking feature of the collective behavior of spherical microswimmers is that for sufficiently st...
Biological and artificial microswimmers often encounter fluid media with non-Newtonian rheological p...
Hydrodynamic interactions are fundamental for the dynamics of swimming self-propelled particles. Spe...
Active matter systems are continuously consuming energy from the environment to achieve different pu...
Typical representation of the swimming motion of microorganisms in fluid environments model the micr...
We present a theoretical study of the behaviour of two active particles under the action of harmonic...
We perform hydrodynamic simulations using the method of multi-particle collision dynamics and a theo...
The squirmer is a simple yet instructive model for microswimmers, which employs an effective slip ve...
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...
Microswimmers or active elements, such as bacteria and active filaments, have an elongated shape, wh...
The boundary behavior of axisymmetric microswimming squirmers is theoretically explored within an in...
We present the results of hydrodynamic simulations using the method of multi-particle collision dyna...
This dissertation contains original research on a range of problems involving the locomotion of diff...
Both biological swimming microorganisms and artificial active particles capable of propulsion have r...
A striking feature of the collective behavior of spherical microswimmers is that for sufficiently st...
Biological and artificial microswimmers often encounter fluid media with non-Newtonian rheological p...
Hydrodynamic interactions are fundamental for the dynamics of swimming self-propelled particles. Spe...
Active matter systems are continuously consuming energy from the environment to achieve different pu...
Typical representation of the swimming motion of microorganisms in fluid environments model the micr...
We present a theoretical study of the behaviour of two active particles under the action of harmonic...
We perform hydrodynamic simulations using the method of multi-particle collision dynamics and a theo...
The squirmer is a simple yet instructive model for microswimmers, which employs an effective slip ve...