arXiv · 1506.07398
Pseudo-Chemotactic Drifts of Artificial Microswimmers
Abstract
We numerically investigate the motion of active artificial microswimmers diffusing in a fuel concentration gradient. We observe that, in the steady state, their probability density accumulates in the low-concentration regions, whereas a tagged swimmer drifts with velocity depending in modulus and orientation on how the concentration gradient affects the self-propulsion mechanism. Under most experimentally accessible conditions, the particle drifts toward the high-concentration regions (pseudo-chemotactic drift). A correct interpretation of experimental data must account for such an "anti-Fickian" behavior.
Explore related subjects
Keep this discovery
Pulak K. Ghosh, Yunyun Li, Fabio Marchesoni, Franco Nori. 2015-06-24. Pseudo-Chemotactic Drifts of Artificial Microswimmers. https://doi.org/10.1103/physreve.92.012114
Cite the original work for its findings. Save a collection to share your selection of sources.