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Pré-Publication, Document De Travail Année : 2014

Direct dynamical energy cascade in the modified KdV equation

Denys Dutykh
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Elena Tobisch
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Résumé

In this study we examine the energy transfer mechanism during the nonlinear stage of the Modulational Instability (MI) in the modified Korteweg-de Vries equation. The particularity of this study consists in considering the problem essentially in the Fourier space. A dynamical energy cascade model of this process originally proposed for the focusing NLS-type equations is transposed to the mKdV setting using the existing connections between the KdV-type and NLS-type equations. The main predictions of the D-cascade model are outlined and thoroughly discussed. Finally, the obtained theoretical results are validated by direct numerical simulations of the mKdV equation using the pseudo-spectral methods. A general good agreement is reported in this study. The nonlinear stages of the MI evolution are also investigated for the mKdV equation.
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Dates et versions

hal-00990724 , version 1 (14-05-2014)
hal-00990724 , version 2 (01-11-2014)
hal-00990724 , version 3 (04-05-2018)

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  • HAL Id : hal-00990724 , version 1

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Denys Dutykh, Elena Tobisch. Direct dynamical energy cascade in the modified KdV equation. 2014. ⟨hal-00990724v1⟩
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