Numerical simulation of dust-acoustic waves

Citation
D. Winske et al., Numerical simulation of dust-acoustic waves, PHYS REV E, 59(2), 1999, pp. 2263-2272
Citations number
47
Categorie Soggetti
Physics
Journal title
PHYSICAL REVIEW E
ISSN journal
1063651X → ACNP
Volume
59
Issue
2
Year of publication
1999
Part
B
Pages
2263 - 2272
Database
ISI
SICI code
1063-651X(199902)59:2<2263:NSODW>2.0.ZU;2-Z
Abstract
We use molecular dynamics (MD) and particle-in-cell (PIC) simulation method s, in which dust grains are treated as discrete particles and the backgroun d plasma is included in the potential shielding (MD) eras a Boltzmann fluid (PIC), to investigate dust-acoustic waves in a one-dimensional, strongly c oupled (with the Coulomb coupling parameter Gamma equal to the ratio of the Coulomb energy to the thermal energy, which is greater than 1) dusty plasm a. We study cases both where the dust is represented by a small number of s imulation particles that form into a regular array structure at large Gamma (crystal limit) and where the dust is represented by a much larger number of particles (fluid limit). We show that the measured frequency for dust ac oustic waves satisfies either a fluidlike dispersion relation or a lattice wavelike dispersion relation, depending on Gamma and the number of simulati on particles. Other PIC simulations, either with plasma ions represented as particles rather than as a Boltzmann fluid or with collisions between the dust and the background gas, have also been carried out and shown to agree with theoretical predictions. Numerical issues associated with smoothing of the accumulated charge density in PIC simulations have also been addressed ; smoothing is shown to affect wave dispersion at high wave numbers in the fluid limit and low wave numbers in the crystal Limit. [S1063-651X(99)01602 -5].