English

Disorder effects in topological insulator nanowires

Mesoscale and Nanoscale Physics 2021-08-20 v5 Disordered Systems and Neural Networks

Abstract

Three-dimensional topological insulator (TI) nanowires with quantized surface subband spectra are studied as a main component of Majorana bound states (MBS) devices. However, such wires are known to have large concentration N1019N \sim 10^{19} cm3^{-3} of Coulomb impurities. It is believed that a MBS device can function only if the amplitude of long-range fluctuations of the random Coulomb potential Γ\Gamma is smaller than the subband gap Δ\Delta. Here we calculate Γ\Gamma for recently experimentally studied large-dielectric-constant (Bi1x_{1-x}Sbx_x)2_2Te3_{3} wires in a small-dielectric-constant environment (no superconductor). We show that provided by such a dielectric-constant contrast, the confinement of electric field of impurities within the wire allows more distant impurities to contribute into Γ\Gamma, leading to Γ3Δ\Gamma \sim 3\Delta. We also calculate a TI wire resistance as a function of the Fermi level and carrier concentration due to scattering on Coulomb and neutral impurities, and do not find observable discrete subband-spectrum related oscillations at N1018N \gtrsim 10^{18} cm3^{-3}.

Keywords

Cite

@article{arxiv.2105.05390,
  title  = {Disorder effects in topological insulator nanowires},
  author = {Yi Huang and B. I. Shklovskii},
  journal= {arXiv preprint arXiv:2105.05390},
  year   = {2021}
}

Comments

7 pages, 3 figures