activity
20162019
most citedMembrane penetration and trapping of an active particle

33 citations · 33 across the 1 of their papers we have counts for

collaborators

8 papers

physics.flu-dyn2019

Frequency-dependent higher-order Stokes singularities near a planar elastic boundary: implications for the hydrodynamics of an active microswimmer near an elastic interface

Abdallah Daddi-Moussa-Ider, Christina Kurzthaler, Christian Hoell +6

The emerging field of self-driven active particles in fluid environments has recently created significant interest in the biophysics and bioengineering communities owing to their p…

cond-mat.soft2019

Multi-species dynamical density functional theory for microswimmers: derivation, orientational ordering, trapping potentials, and shear cells

Christian Hoell, Hartmut Löwen, Andreas M. Menzel

Microswimmers typically operate in complex environments. In biological systems, often diverse species are simultaneously present and interact with each other. Here, we derive a (ti…

physics.flu-dyn2019

Creeping motion of a solid particle inside a spherical elastic cavity. II. Asymmetric motion

Christian Hoell, Hartmut Löwen, Andreas M. Menzel +1

An analytical method is proposed for computing the low-Reynolds-number hydrodynamic mobility function of a small colloidal particle asymmetrically moving inside a large spherical e…

cond-mat.soft201933 cited

Membrane penetration and trapping of an active particle

Abdallah Daddi-Moussa-Ider, Segun Goh, Benno Liebchen +6

The interaction between nano- or micro-sized particles and cell membranes is of crucial importance in many biological and biomedical applications such as drug and gene delivery to…

cond-mat.stat-mech2018

Dynamical density functional theory for circle swimmers

Christian Hoell, Hartmut Löwen, Andreas M. Menzel

The majority of studies on self-propelled particles and microswimmers concentrates on objects that do not feature a deterministic bending of their trajectory. However, perfect axia…

cond-mat.soft2018

Particle-scale statistical theory for hydrodynamically induced polar ordering in microswimmer suspensions

Christian Hoell, Hartmut Löwen, Andreas M. Menzel

Previous particle-based computer simulations have revealed a significantly more pronounced tendency of spontaneous global polar ordering in puller (contractile) microswimmer suspen…