arXiv · 1511.04542
Diffusion properties of active particles with directional reversal
Abstract
The diffusion properties of self-propelled particles which move at constant speed and, in addition, reverse their direction of motion repeatedly are investigated. The internal dynamics of particles triggering these reversal processes is modeled by a stochastic clock. The velocity correlation function as well as the mean squared displacement is investigated and, furthermore, a general expression for the diffusion coefficient for self-propelled particles with directional reversal is derived. Our analysis reveals the existence of an optimal, finite rotational noise amplitude which maximizes the diffusion coefficient. We comment on the relevance of these results with regard to microbiological systems and suggest further experiments in this context.
Explore related subjects
Keep this discovery
Robert Großmann, Fernando Peruani, Markus Bär. 2016-05-27. Diffusion properties of active particles with directional reversal. https://doi.org/10.1088/1367-2630%2F18%2F4%2F043009
Cite the original work for its findings. Save a collection to share your selection of sources.