Time-fractional KdV equation for plasma of two different temperature electrons and stationary ion

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Abstract

Using the time-fractional KdV equation, the nonlinear properties of small but finite amplitude electron-acoustic solitary waves are studied in a homogeneous system of unmagnetized collisionless plasma. This plasma consists of cold electrons fluid, non-thermal hot electrons, and stationary ions. Employing the reductive perturbation technique and the Euler-Lagrange equation, the time-fractional KdV equation is derived and it is solved using variational method. It is found that the time-fractional parameter significantly changes the soliton amplitude of the electron-acoustic solitary waves. The results are compared with the structures of the broadband electrostatic noise observed in the dayside auroral zone. © 2011 American Institute of Physics.

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El-Wakil, S. A., Abulwafa, E. M., El-Shewy, E. K., & Mahmoud, A. A. (2011). Time-fractional KdV equation for plasma of two different temperature electrons and stationary ion. Physics of Plasmas, 18(9). https://doi.org/10.1063/1.3640533

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