English

Scattering of plasmons at the intersection of two metallic nanotubes: Implications for tunnelling

Mesoscale and Nanoscale Physics 2009-11-13 v2

Abstract

We study theoretically the plasmon scattering at the intersection of two metallic carbon nanotubes. We demonstrate that for a small angle of crossing, θ1\theta \ll 1, the transmission coefficient is an oscillatory function of λ/θ\lambda/\theta, where λ\lambda is the interaction parameter of the Luttinger liquid in an individual nanotube. We calculate the tunnel density of states, ν(ω,x)\nu(\omega,x), as a function of energy, ω\omega, and distance, xx, from the intersection. In contrast to a single nanotube, we find that, in the geometry of crossed nanotubes, conventional "rapid" oscillations in ν(ω,x)\nu(\omega,x) due to the plasmon scattering acquire an aperiodic "slow-breathing" envelope which has λ/θ\lambda/\theta nodes.

Keywords

Cite

@article{arxiv.0806.2152,
  title  = {Scattering of plasmons at the intersection of two metallic nanotubes: Implications for tunnelling},
  author = {V. V. Mkhitaryan and Y. Fang and J. Gerton and E. G. Mishchenko and M. E. Raikh},
  journal= {arXiv preprint arXiv:0806.2152},
  year   = {2009}
}

Comments

4 pages, 2 figures (revised version)