Cellcell and Cellnoise Interactions of Bacterial Cells in a Shallow Circular Pool and Transitions of Collective Motions
arXiv:1812.07191 · doi:10.7566/JPSJ.88.054005
Abstract
We have experimentally investigated the transitions of collective motions of bacterial cells in a shallow circular pool using the bacterial species . In our previous paper, we reported that the collective motions were classified into six phases on a phase diagram with two parameters, namely, the reduced cell length and the cell density . In this study, we focused on the sharp transitions at () with low values of between the phase and the - phase. By introducing the order parameter which measures the aligned cell motion along the circumferential direction of a pool, the transitions at were clearly characterized. On the basis of the detailed observations of single-cell trajectories in a pool, we verified that the effect of cellnoise interactions was widely distributed. We conclude that, even in such random environment, the sharp transitions of collective motions were caused by the cellcell interactions at .
v2: LaTeX2e, 18 pages, 9 figures, revised version for publication in J. Phys. Soc. Jpn