Filamentation of magnetosonic wave and generation of magnetic turbulence in laser plasma interaction

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Abstract

This paper presents a theoretical model for the magnetic turbulence in laser plasma interaction due to the nonlinear coupling of magnetosonic wave with ion acoustic wave in overdense plasma. For this study, dynamical equations of magnetosonic waves and the ion acoustic waves have been developed in the presence of ponderomotive force due to the pump magnetosonic wave. Slowly converging and diverging behavior has been studied semi-analytically, this results in the formation of filaments of the magnetosonic wave. Numerical simulation has also been carried out to study nonlinear stage. From the results, it has been found that the localized structures become quite complex in nature. Further, power spectrum has been studied. Results show that the spectral index follows (∼k-2.0) scaling at smaller scale. Relevance of the present investigation has been shown with the experimental observation.

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Modi, K. V., Tiwary, P. P., Singh, R. K., Satsangi, V. R., & Sharma, R. P. (2014). Filamentation of magnetosonic wave and generation of magnetic turbulence in laser plasma interaction. Physics of Plasmas, 21(10). https://doi.org/10.1063/1.4897395

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