English

On the validity of the linear speed selection mechanism for fronts of the nonlinear diffusion equation

patt-sol 2016-08-14 v1 Pattern Formation and Solitons

Abstract

We consider the problem of the speed selection mechanism for the one dimensional nonlinear diffusion equation ut=uxx+f(u)u_t = u_{xx} + f(u). It has been rigorously shown by Aronson and Weinberger that for a wide class of functions ff, sufficiently localized initial conditions evolve in time into a monotonic front which propagates with speed cc^* such that 2f(0)c<2sup(f(u)/u)2 \sqrt{f'(0)} \leq c^* < 2 \sqrt{\sup(f(u)/u)}. The lower value cL=2f(0)c_L = 2 \sqrt{f'(0)} is that predicted by the linear marginal stability speed selection mechanism. We derive a new lower bound on the the speed of the selected front, this bound depends on ff and thus enables us to assess the extent to which the linear marginal selection mechanism is valid.

Keywords

Cite

@article{arxiv.patt-sol/9403001,
  title  = {On the validity of the linear speed selection mechanism for fronts of the nonlinear diffusion equation},
  author = {R. D. Benguria and M. C. Depassier},
  journal= {arXiv preprint arXiv:patt-sol/9403001},
  year   = {2016}
}

Comments

9 pages, REVTEX