High-speed tracking and a delayed-charging model attribute centimeter-scale, regular vertical dust oscillations in an rf sheath to a finite charging time of about 0.9 milliseconds.
Intermittent "Turbulence" in a Many-body System
1 Pith paper cite this work. Polarity classification is still indexing.
abstract
In natural settings, intermittent dynamics are ubiquitous and often arise from a coupling between external driving and spatial heterogeneities. A well-known example is the generation of transient, turbulent puffs of fluid through a pipe with rough walls. Here we show how similar dynamics can emerge in a discrete, crystalline system of particles driven by noise. Polydispersity in particle masses leads to localized vibrational modes that effectuate a transition to a gas-like phase. A minimal model for the evolution of the system's mechanical energies exhibits quasi-cyclic oscillations, and a single, dimensionless number captures the essential features of the intermittent dynamics, analogous to the Reynolds number for pipe flow.
fields
physics.plasm-ph 1years
2019 1verdicts
CONDITIONAL 1representative citing papers
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The origin of large amplitude oscillations of dust particles in a plasma sheath
High-speed tracking and a delayed-charging model attribute centimeter-scale, regular vertical dust oscillations in an rf sheath to a finite charging time of about 0.9 milliseconds.