most citedPressure and Phase Equilibria in Interacting Active Brownian Spheres

363 citations · 1.1k across the 5 of their papers we have counts for

collaborators

5 papers

cond-mat.soft2014363 cited

Pressure and Phase Equilibria in Interacting Active Brownian Spheres

A. P. Solon, J. Stenhammar, R. Wittkowski +4

We derive from first principles the mechanical pressure , defined as the force per unit area on a bounding wall, in a system of spherical, overdamped, active Brownian particles…

cond-mat.soft201475 cited

Can the self-propulsion of anisotropic microswimmers be described by using forces and torques?

Borge ten Hagen, Raphael Wittkowski, Daisuke Takagi +3

The self-propulsion of artificial and biological microswimmers (i.e., active colloidal particles) has often been modelled by using a force and a torque entering into the overdamped…

cond-mat.soft2014275 cited

Gravitaxis of asymmetric self-propelled colloidal particles

Borge ten Hagen, Felix Kümmel, Raphael Wittkowski +3

Many motile microorganisms adjust their swimming motion relative to the gravitational field and thus counteract sedimentation to the ground. This gravitactic behavior is often the…

cond-mat.soft2014334 cited

Activity-induced phase separation and self-assembly in mixtures of active and passive particles

Joakim Stenhammar, Raphael Wittkowski, Davide Marenduzzo +1

We investigate the phase behavior and kinetics of a monodisperse mixture of active (\textit{i.e.}, self-propelled) and passive isometric Brownian particles through Brownian dynamic…

cond-mat.soft201420 cited

Reply to Comment on "Circular Motion of Asymmetric Self-Propelling Particles"

Felix Kümmel, Borge ten Hagen, Raphael Wittkowski +6

In a Comment [Phys. Rev. Lett. 113, 029801 (2014)] on our Letter on self-propelled asymmetric particles [Phys. Rev. Lett. 110, 198302 (2013); arXiv:1302.5787], Felderhof claims tha…