Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
1857306 | Annals of Physics | 2016 | 10 Pages |
Abstract
The problem of two-dimensional arbitrary amplitude low-frequency electrostatic oscillation in a quasi-neutral quantum plasma is solved exactly by elementary means. In such quantum plasmas we have treated electrons quantum mechanically and ions classically. The exact analytical solution of the nonlinear system exhibits the formation of dark and black solitons. Numerical simulation also predicts the possible periodic solution of the nonlinear system. Nonlinear analysis reveals that the system does have a bifurcation at a critical Mach number that depends on the angle of propagation of the wave. The small-amplitude limit leads to the formation of weakly nonlinear Kadomstev–Petviashvili solitons.
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Physical Sciences and Engineering
Physics and Astronomy
Physics and Astronomy (General)
Authors
Samiran Ghosh, Nikhil Chakrabarti,