English

Tunable few-electron double quantum dots and Klein tunnelling in ultra-clean carbon nanotubes

Mesoscale and Nanoscale Physics 2009-07-15 v1

Abstract

Quantum dots defined in carbon nanotubes are a platform for both basic scientific studies and research into new device applications. In particular, they have unique properties that make them attractive for studying the coherent properties of single electron spins. To perform such experiments it is necessary to confine a single electron in a quantum dot with highly tunable barriers, but disorder has until now prevented tunable nanotube-based quantum-dot devices from reaching the single-electron regime. Here, we use local gate voltages applied to an ultra-clean suspended nanotube to confine a single electron in both a single quantum dot and, for the first time, in a tunable double quantum dot. This tunability is limited by a novel type of tunnelling that is analogous to that in the Klein paradox of relativistic quantum mechanics.

Keywords

Cite

@article{arxiv.0907.2321,
  title  = {Tunable few-electron double quantum dots and Klein tunnelling in ultra-clean carbon nanotubes},
  author = {G. A. Steele and G. Gotz and L. P. Kouwenhoven},
  journal= {arXiv preprint arXiv:0907.2321},
  year   = {2009}
}

Comments

21 pages including supplementary information