Directional Transport of Propelled Brownian Particles Confined in a Smooth Corrugated Channel with Colored Noise
arXiv:1905.10788 · doi:10.1016/j.physa.2019.122779
Abstract
The transport phenomenon(directional movement) of self-propelled Brownian particles moving in a smooth corrugated confined channel is investigated. It is found that large direction noise intensity should reduce particles directional movement when the angle Gaussian noise intensity is small. The average velocity has a maximum with increasing direction noise intensity when angle Gaussian noise intensity is large. directional noise has negligible effect on directional movement. Large angle Gaussian noise intensity should weaken the directional transport. Interestingly, the movement direction changes more than once with increasing periodic force amplitude.