English

One-dimensional quasicrystals with power-law hopping

Disordered Systems and Neural Networks 2019-07-17 v2 Quantum Gases Statistical Mechanics

Abstract

One-dimensional quasi-periodic systems with power-law hopping, 1/ra1/r^a, differ from both the standard Aubry-Azbel-Harper (AAH) model and from power-law systems with uncorrelated disorder. Whereas in the AAH model all single-particle states undergo a transition from ergodic to localized at a critical quasi-disorder strength, short-range power-law hops with a>1a>1 can result in mobility edges. Interestingly, there is no localization for long-range hops with a1a\leq 1, in contrast to the case of uncorrelated disorder. Systems with long-range hops are rather characterized by ergodic-to-multifractal edges and a phase transition from ergodic to multifractal (extended but non ergodic) states. We show that both mobility and ergodic-to-multifractal edges may be clearly revealed in experiments on expansion dynamics.

Keywords

Cite

@article{arxiv.1808.03585,
  title  = {One-dimensional quasicrystals with power-law hopping},
  author = {X. Deng and S. Ray and S. Sinha and G. V. Shlyapnikov and L. Santos},
  journal= {arXiv preprint arXiv:1808.03585},
  year   = {2019}
}

Comments

5 pages, 5 figures, plus Supplementary material, revised