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  • Indirect-drive ablative Ric...
    Landen, O L; Baker, K L; Clark, D S; Goncharov, V N; Hammel, B A; Ho, D D; Hurricane, O A; Lindl, J D; Loomis, E N; Masse, L; Mauche, C; Milovich, J L; Peterson, J L; Smalyuk, V A; Yi, S A; Velikovich, A L; Weber, C.

    Journal of physics. Conference series, 05/2016, Letnik: 717, Številka: 1
    Journal Article

    The ablation front Rayleigh Taylor hydroinstability growth dispersion curve for indirect-drive implosions has been shown to be dependent on the Richtmyer Meshkov growth during the first shock transit phase. In this paper, a simplified treatment of the first shock ablative Richtmyer-Meshkov (ARM) growth dispersion curve is used to extract differences in ablation front perturbation growth behavior as function of foot pulse shape and ablator material for comparing the merits of various ICF design option.