Two-dimensional complex (dusty) plasma with active Janus particles
arXiv:2211.11474 · doi:10.1063/5.0121734
Abstract
A two-dimensional complex plasma containing active Janus particles was studied experimentally. A single layer of micron-size plastic microspheres was suspended in the plasma sheath of a radio-frequency discharge in argon at low pressure. The particle sample used was a mixture of regular particles and Janus particles, which were coated on one side with a thin layer of platinum. Unlike a suspension consisting of regular particles only, the suspension with inclusion of Janus particles did not form an ordered lattice in the experimental conditions used. Instead, the particles moved around with high kinetic energy in a disordered suspension. Unexpectedly, the mean kinetic energy of the particles declined as the illumination laser power was increased. This is explained by the competition of two driving forces, the photophoretic force and the oppositely directed ion drag force. The mean-squared displacement of the particles scaled as with at small times indicating ballistic motion and at longer times due to the combined effect of the Janus particle propensity to move in circular trajectories and external confinement.
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References in corpus (6)
- Physics of Microswimmers - Single Particle Motion and Collective Behavior
- Inertial effects of self-propelled particles: from active Brownian to active Langevin motion
- Active Ornstein-Uhlenbeck model for self-propelled particles with inertia
- Active Janus particles in a complex plasma
- Time-dependent inertia of self-propelled particles: the Langevin rocket
- Interaction of two-dimensional plasma crystals with upstream charged particles