Abstract
The nonlinear ion-acoustic waves in plasma having excess super-thermal electrons and positrons have been investigated. Reductive perturbation method is used to obtain a Kadomstev-Petviashvili equation describing the system. The dynamics of the modulationally unstable wave packets described by the Kadomstev-Petviashvili equation gives rise to the formation of rogue excitation that is described by a nonlinear Schrödinger equation. The dependence of rogue waves profiles on the system parameters investigated numerically. The result of the present investigation may be applicable to some plasma environments, such as galactic clusters, interstellar medium.
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El-Wakil, S. A., Abulwafa, E. M., Elhanbaly, A., & El-Shewy, E. K. (2014). Rogue waves for Kadomstev-Petviashvili equation in electron-positron-ion plasma. Astrophysics and Space Science, 353(2), 501–506. https://doi.org/10.1007/s10509-014-2061-1
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