arXiv · 1003.6038
Ion-beam driven dust ion-acoustic solitary waves in dusty plasmas
Abstract
The nonlinear propagation of small but finite amplitude dust ion-acoustic waves (DIAWs) in an ion-beam driven plasma with Boltzmannian electrons, positive ions and stationary charged dust grains, is studied by using the standard reductive perturbation technique (RPT). It is shown that there exist two critical values $(γ_{c1}$ and $γ_{c2})$ of ion-beam to ion phase speed ratio $(γ)$, beyond which the beam generated solitons are not possible. The effects of the parameters, namely $γ$, the ratio of the ion-beam to plasma ion density $(μ_{i})$, the dust to ion density ratio $(μ_{d})$ as well as the ion-beam to plasma ion mass ratio $(μ)$ on both the amplitude and width of the stationary DIAWs are analyzed numerically, and applications of the results to laboratory ion-beam as well as space plasmas (e.g., auroral plasmas) are explained.
Explore related subjects
Keep this discovery
N. C. Adhikary, A. P. Misra, H. Bailung, J. Chutia. 2010-10-26. Ion-beam driven dust ion-acoustic solitary waves in dusty plasmas. https://doi.org/10.1063/1.3381036
Cite the original work for its findings. Save a collection to share your selection of sources.