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Journal of Physics. Condensed Matter : an Institute of Physics Journal|December 3, 2019
Predictive local field theory for interacting active Brownian spheres in two spatial dimensionsJens Bickmann, Raphael WittkowskiNature Communications|November 5, 2020
Effects of social distancing and isolation on epidemic spreading modeled via dynamical density functional theoryMichael Te Vrugt, Jens Bickmann, Raphael WittkowskiJournal of Physics. Condensed Matter : an Institute of Physics Journal|March 14, 2023
How to derive a predictive field theory for active Brownian particles: a step-by-step tutorialMichael Te Vrugt, Jens Bickmann, Raphael WittkowskiThe Journal of Chemical Physics|May 21, 2022
Analytical approach to chiral active systems: Suppressed phase separation of interacting Brownian circle swimmersJens Bickmann, Stephan Bröker, Julian Jeggle, et al.Physical Review. E|November 18, 2023
Active Brownian particles in external force fields: Field-theoretical models, generalized barometric law, and programmable density patternsJens Bickmann, Stephan Bröker, Michael Te Vrugt, et al.Physical Review Letters|November 5, 2023
Orientation-Dependent Propulsion of Active Brownian Spheres: From Self-Advection to Programmable Cluster ShapesStephan Bröker, Jens Bickmann, Michael Te Vrugt, et al.Langmuir : the ACS Journal of Surfaces and Colloids|August 23, 2022
Acoustic Propulsion of Nano- and Microcones: Dependence on the Viscosity of the Surrounding FluidJohannes Voß, Raphael WittkowskiACS Nano|March 9, 2022
Orientation-Dependent Propulsion of Triangular Nano- and Microparticles by a Traveling Ultrasound WaveJohannes Voß, Raphael WittkowskiNanoscale Advances|September 22, 2022
Acoustically propelled nano- and microcones: fast forward and backward motionJohannes Voß, Raphael WittkowskiNanoscale Advances|September 22, 2022
On the shape-dependent propulsion of nano- and microparticles by traveling ultrasound wavesJohannes Voß, Raphael WittkowskiPageof 6