Dust-Acoustic Surface Wave Stability in Dusty Lorentzian Plasmas

The dispersion relation of dust-acoustic surface waves (DASW) propagating on the interface betwen a vacuum and a semi-bounded dusty Lorentzian plasma is derived using a standard kinetic approach. The real and the imaginary parts of the wave frequency ωr+iγ are obtained as functions of the scaled wav...

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Veröffentlicht in:Journal of the Korean Physical Society 2008, 53(2), , pp.636-640
Hauptverfasser: Kim, Taejoon, Lee, Myoung-Jae
Format: Artikel
Sprache:eng
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Zusammenfassung:The dispersion relation of dust-acoustic surface waves (DASW) propagating on the interface betwen a vacuum and a semi-bounded dusty Lorentzian plasma is derived using a standard kinetic approach. The real and the imaginary parts of the wave frequency ωr+iγ are obtained as functions of the scaled wave number μkkxλD,where μk = (2k-3)/(2k-1)with k being the spectral index of the Lorentzian distribution function and λD being the total Debye length of ions and electrons. The wave displays Landau damping for al wave numbers, but can be significantly reduced as the wave number increases. The maximum damping rates are obtained as functions of the spectral index and the ion-to-electron density ratio. KCI Citation Count: 3
ISSN:0374-4884
1976-8524
DOI:10.3938/jkps.53.636