arXiv · 0907.3601
Nonlinear structures: explosive, soliton and shock in a quantum electron-positron-ion magnetoplasma
Abstract
Theoretical and numerical studies are performed for the nonlinear structures (explosive, solitons and shock) in quantum electron-positron-ion magnetoplasmas. For this purpose, the reductive perturbation method is employed to the quantum hydrodynamical equations and the Poisson equation, obtaining extended quantum Zakharov-Kuznetsov equation. The latter has been solved using the generalized expansion method to obtain a set of analytical solutions, which reflect the possibility of the propagation of various nonlinear structures. The relevance of the present investigation to the white dwarfs is highlighted.
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R. Sabry, W. M. Moslem, F. Haas, S. Ali, P. K. Shukla. 2009-07-21. Nonlinear structures: explosive, soliton and shock in a quantum electron-positron-ion magnetoplasma. https://doi.org/10.1063/1.3037265
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