Ion-acoustic dark solitons collision in an ultracold neutral plasma

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Abstract

Dark solitons collision in an ultracold neutral plasma in the framework of the phenomenological generalized hydrodynamic model is reported. The derivative expansion method is used to derive a nonlinear Schrö dinger equation for describing the low frequency modulation. The critical wavenumber k c, which indicates where the modulational instability sets in, is determined precisely. Also, the modulationally stable and unstable regions are obtained for a wide range of the wavenumber k and the ions effective temperature ratio . In the stable regions, the collisions between two-dark solitons are investigated using the extended Poincaré-Lighthill-Kuo method and their corresponding phase shifts are derived. The dependence of both and k on the phase shift is examined.

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El-Tantawy, S. A., Moslem, W. M., & Schlickeiser, R. (2015). Ion-acoustic dark solitons collision in an ultracold neutral plasma. Physica Scripta, 90(8). https://doi.org/10.1088/0031-8949/90/8/085606

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