We analyzed the effect of confinement on the effective diffusion of a run-and-tumble E. coli-like flagellated microswimmer. We used a simulation protocol where the run phases are obtained via a fully resolved swimming problem, i.e., Stokes equations for the fluid coupled with rigid-body dynamics for the microorganism, while tumbles and collisions with the walls are modeled as random reorientation of the microswimmer. For weak confinement, the swimmer is trapped in circular orbits close to the solid walls. In this case, optimal diffusivity is observed when the tumbling frequency is comparable with the angular velocity of the stable orbits. For strong confinement, stable circular orbits disappear and the diffusion coefficient monotonically de...
Swimming cells and microorganisms must often move through complex fluids that contain an immersed mi...
Run-and-tumble dynamics is a wide-spread mechanism of swimming bacteria. The accumulation of run-and...
Microswimmers, such as bacteria or motile algae, which typically live in water and soil encounter bo...
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...
We analyzed the effect of confinement on the effective diffusion of a run-and-tumble E. coli-like fl...
Microswimmers are objects that are able to propel themselves actively in fluid environments. The typ...
Microswimmers are objects that are able to propel themselves actively in fluid environments. The typ...
International audienceThe microalga Chlamydomonas Reinhardtii (CR) is used here as a model system to...
International audienceThe microalga Chlamydomonas Reinhardtii (CR) is used here as a model system to...
International audienceThe microalga Chlamydomonas Reinhardtii (CR) is used here as a model system to...
This dissertation contains original research on a range of problems involving the locomotion of diff...
Active matter systems are continuously consuming energy from the environment to achieve different pu...
Tiny self-propelled swimmers capable of autonomous navigation through complex environments provide a...
Tiny self-propelled swimmers capable of autonomous navigation through complex environments provide a...
Swimming cells and microorganisms must often move through complex fluids that contain an immersed mi...
Run-and-tumble dynamics is a wide-spread mechanism of swimming bacteria. The accumulation of run-and...
Microswimmers, such as bacteria or motile algae, which typically live in water and soil encounter bo...
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...
We analyzed the effect of confinement on the effective diffusion of a run-and-tumble E. coli-like fl...
Microswimmers are objects that are able to propel themselves actively in fluid environments. The typ...
Microswimmers are objects that are able to propel themselves actively in fluid environments. The typ...
International audienceThe microalga Chlamydomonas Reinhardtii (CR) is used here as a model system to...
International audienceThe microalga Chlamydomonas Reinhardtii (CR) is used here as a model system to...
International audienceThe microalga Chlamydomonas Reinhardtii (CR) is used here as a model system to...
This dissertation contains original research on a range of problems involving the locomotion of diff...
Active matter systems are continuously consuming energy from the environment to achieve different pu...
Tiny self-propelled swimmers capable of autonomous navigation through complex environments provide a...
Tiny self-propelled swimmers capable of autonomous navigation through complex environments provide a...
Swimming cells and microorganisms must often move through complex fluids that contain an immersed mi...
Run-and-tumble dynamics is a wide-spread mechanism of swimming bacteria. The accumulation of run-and...
Microswimmers, such as bacteria or motile algae, which typically live in water and soil encounter bo...