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Melting and heating of two-dimensional Coulomb clusters in dusty plasmas
48
Citations
16
References
2004
Year
EngineeringPlasma SciencePlasma PhysicsGas DischargeTwo-dimensional Coulomb ClustersHigh Temperature AerosolGas DynamicNucleationThermodynamicsNonthermal PlasmaCrystal ModesMaterials ScienceCluster SciencePhysicsAtomic PhysicsDust ScienceMultiphase FlowApplied PhysicsCondensed Matter PhysicsEntire Phase TransitionDusty Plasma
The heating and melting of two-dimensional dust clusters with one additional particle in the lower layer has been investigated experimentally in a gas discharge. The full dynamical properties of the system during the entire phase transition were determined in terms of the spectral power densities of the crystal modes. A two-step melting transition is identified when the gas pressure in the discharge is reduced: first, a sudden increase of the dust temperature takes place due to an instability of the lower-layer particle resulting in a hot crystalline state of the cluster, and second, the actual transition into a fluid state is observed at a decisively lower gas pressure.
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