English

Non-collinear spin-orbit magnetic fields in a carbon nanotube double quantum dot

Mesoscale and Nanoscale Physics 2017-01-04 v1

Abstract

We demonstrate experimentally that non-collinear intrinsic spin-orbit magnetic fields can be realized in a curved carbon nanotube two-segment device. Each segment, analyzed in the quantum dot regime, shows near four-fold degenerate shell structure allowing for identification of the spin-orbit coupling and the angle between the two segments. Furthermore, we determine the four unique spin directions of the quantum states for specific shells and magnetic fields. This class of quantum dot systems is particularly interesting when combined with induced superconducting correlations as it may facilitate unconventional superconductivity and detection of Cooper pair entanglement. Our device comprises the necessary elements.

Keywords

Cite

@article{arxiv.1606.01065,
  title  = {Non-collinear spin-orbit magnetic fields in a carbon nanotube double quantum dot},
  author = {Morten Canth Hels and Bernd Braunecker and Kasper Grove-Rasmussen and Jesper Nygård},
  journal= {arXiv preprint arXiv:1606.01065},
  year   = {2017}
}

Comments

Supplemental material available at https://www.dropbox.com/s/ay3edjgg015uzrc/supplement.pdf?dl=1