English

Nonlinear evolution of the ablative Rayleigh-Taylor instability with preheating

Plasma Physics 2011-04-27 v2

Abstract

Evolution of the single-mode ablative Rayleigh-Taylor instability in the presence of preheating is investigated numerically. It is found that the instability evolution depends strongly on the preheating length LL in front of the ablation-front interface. For weak preheating (L/LSHf0L/L_{\rm SH}\leq f_0, where LSHL_{\rm SH} is the Spitzer-Harm length and f020f_0\sim 20 is a critical value), the linear growth rate has a sharp maximum and a secondary spike-bubble structure is generated. Interaction of this growing structure with the master spike-bubble leads to rupture of the latter. However, for strong preheating (L/LSH>20L/L_{\rm SH}>20), the linear growth rate has no sharp maximum and no secondary spike-bubble is generated. Instead, the master spike-bubble evolves into an elongated jet. These results are interpreted in terms of the evolution and interaction of the instability-generated harmonic modes.

Keywords

Cite

@article{arxiv.1005.4179,
  title  = {Nonlinear evolution of the ablative Rayleigh-Taylor instability with preheating},
  author = {W. H. Ye and X. T. He and W. Y. Zhang and M. Y. Yu},
  journal= {arXiv preprint arXiv:1005.4179},
  year   = {2011}
}

Comments

5 pages, 4 figures

R2 v1 2026-06-21T15:26:38.569Z