activity
20182020
collaborators

7 papers

cond-mat.soft2020

Mean-Field Theory of Inhomogeneous Fluids

S. M. Tschopp, H. D. Vuijk, A. Sharma +1

The Barker-Henderson perturbation theory is a bedrock of liquid-state physics, providing quantitative predictions for the bulk thermodynamic properties of realistic model systems.…

cond-mat.stat-mech2020

Correlations in multithermostat Brownian systems with Lorentz force

Iman Abdoli, Erik Kalz, Hidde Derk Vuijk +4

We study the motion of a Brownian particle subjected to Lorentz force due to an external magnetic field. Each spatial degree of freedom of the particle is coupled to a different th…

cond-mat.stat-mech2020

Unusual stationary state in Brownian systems with Lorentz force

Iman Abdoli, Hidde Derk Vuijk, Rene Wittmann +3

In systems with overdamped dynamics, the Lorentz force reduces the diffusivity of a Brownian particle in the plane perpendicular to the magnetic field. The anisotropy in diffusion…

physics.bio-ph2019

Pseudo-chemotaxis of active Brownian particles competing for food

Holger Merlitz, Hidde Derk Vuijk, Rene Wittmann +2

Using Brownian dynamics simulations, the motion of active Brownian particles (ABPs) in the presence of fuel (or 'food') sources is studied. It is an established fact that within co…

cond-mat.stat-mech2019

Nondiffusive Fluxes in Brownian System with Lorentz Force

Iman Abdoli, Hidde Derk Vuijk, Jens-Uwe Sommer +2

The Fokker-Planck equation provides complete statistical description of a particle undergoing random motion in a solvent. In the presence of Lorentz force due to an external magnet…

cond-mat.soft2019

Lorentz forces induce inhomogeneity and fluxes in active systems

Hidde Derk Vuijk, Jens-Uwe Sommer, Holger Merlitz +2

We consider the nonequilibrium dynamics of a charged active Brownian particle in the presence of a space dependent magnetic field. It has recently been shown that the Lorentz force…