Slow dynamics in a quasi-two-dimensional binary complex plasma
arXiv:1609.01456 · doi:10.1103/PhysRevLett.123.185002
Abstract
Slow dynamics in an amorphous quasi-two-dimensional complex plasma, comprised of microparticles of two different sizes, was studied experimentally. The motion of individual particles was observed using video microscopy, and the self-part of the intermediate scattering function as well as the mean-squared particle displacement was calculated. The long-time structural relaxation reveals the characteristic behavior near the glass transition. Our results suggest that binary complex plasmas can be an excellent model system to study slow dynamics in classical supercooled fluids.
References in corpus (12)
- Theoretical perspective on the glass transition and amorphous materials
- Supercooled Liquids for Pedestrians
- Caging dynamics in a granular fluid
- Long Wavelength Fluctuations and the Glass Transition in 2D and 3D
- Stretched and compressed exponentials in the relaxation dynamics of a metallic glass-forming melt
- From Equilibrium to Steady State: The Transient Dynamics of Colloidal Liquids under Shear
- Mixing effects for the structural relaxation in binary hard-sphere liquids
- Dynamic Glass Transition in Two Dimensions
- Glass Transition for Driven Granular Fluids
- Identifying anomalous diffusion and melting in dusty plasmas
- Interaction of two-dimensional plasma crystals with upstream charged particles
- Structure and dynamics of a glass-forming binary complex plasma with non-reciprocal interaction
Cited by in corpus (8)
- Revealing the supercritical dynamics of dusty plasmas and their liquid-like to gas-like dynamical crossover
- Density waves at the interface of a binary complex plasma
- Structure and dynamics of a glass-forming binary complex plasma with non-reciprocal interaction
- Machine learning in the study of phase transition of two-dimensional complex plasmas
- Dispersion relation of square lattice waves in a two-dimensional binary complex plasma
- Penetration of a supersonic particle at the interface in a binary complex plasma
- Observation of fast sound in two-dimensional dusty plasma liquids
- Separation of bi-dispersed microspheres in dusty plasma ratchet experiments