English

Universal trapping scaling on the unstable manifold for a collisionless electrostatic mode

patt-sol 2009-10-28 v1 Pattern Formation and Solitons

Abstract

An amplitude equation for an unstable mode in a collisionless plasma is derived from the dynamics on the two-dimensional unstable manifold of the equilibrium. The mode amplitude ρ(t)\rho(t) decouples from the phase due to the spatial homogeneity of the equilibrium, and the resulting one-dimensional dynamics is analyzed using an expansion in ρ\rho. As the linear growth rate γ\gamma vanishes, the expansion coefficients diverge; a rescaling ρ(t)γ2r(γt)\rho(t)\equiv\gamma^2\,r(\gamma t) of the mode amplitude absorbs these singularities and reveals that the mode electric field exhibits trapping scaling E1γ2|E_1|\sim\gamma^2 as γ0\gamma\rightarrow0. The dynamics for r(τ)r(\tau) depends only on the phase eiξe^{i\xi} where dϵk/dz=ϵkeiξ/2d\epsilon_{{k}} /dz=|{\epsilon_{{k}}}|e^{-i\xi/2} is the derivative of the dielectric as γ0\gamma\rightarrow0.

Keywords

Cite

@article{arxiv.patt-sol/9407001,
  title  = {Universal trapping scaling on the unstable manifold for a collisionless electrostatic mode},
  author = {John David Crawford},
  journal= {arXiv preprint arXiv:patt-sol/9407001},
  year   = {2009}
}

Comments

11 pages (Latex/RevTex), 2 figures available in hard copy from the Author ([email protected]); paper accepted by Physical Review Letters