English

Disturbance spreading in incommensurate and quasiperiodic systems

Statistical Mechanics 2009-10-31 v1

Abstract

The propagation of an initially localized excitation in one dimensional incommensurate, quasiperiodic and random systems is investigated numerically. It is discovered that the time evolution of variances σ2(t)\sigma^2(t) of atom displacements depends on the initial condition. For the initial condition with nonzero momentum, σ2(t)\sigma^2(t) goes as tαt^\alpha with α=1\alpha=1 and 0 for incommensurate Frenkel-Kontorova (FK) model at VV below and above VcV_c respectively; and α=1\alpha=1 for uniform, quasiperiodic and random chains. It is also found that α=1β\alpha=1-\beta with β\beta the exponent of distribution function of frequency at zero frequency, i.e., ρ(ω)ωβ\rho(\omega)\sim \omega^{\beta} (as ω0\omega\to 0). For the initial condition with zero momentum, α=0\alpha=0 for all systems studied. The underlying physical meaning of this diffusive behavior is discussed.

Keywords

Cite

@article{arxiv.cond-mat/0002235,
  title  = {Disturbance spreading in incommensurate and quasiperiodic systems},
  author = {Bambi Hu and Baowen Li and Peiqing Tong},
  journal= {arXiv preprint arXiv:cond-mat/0002235},
  year   = {2009}
}

Comments

8 Revtex Pages, 5 PS figures included, to appear in Phys. Rev. B April 2000