English

Electric-field noise from thermally-activated fluctuators in a surface ion trap

Quantum Physics 2019-07-03 v2 Atomic Physics

Abstract

We probe electric-field noise near the metal surface of an ion trap chip in a previously unexplored high-temperature regime. We observe a non-trivial temperature dependence with the noise amplitude at 1-MHz frequency saturating around 500~K. Measurements of the noise spectrum reveal a 1/fα11/f^{\alpha\approx1}-dependence and a small decrease in α\alpha between low and high temperatures. This behavior can be explained by considering noise from a distribution of thermally-activated two-level fluctuators with activation energies between 0.35~eV and 0.65~eV. Processes in this energy range may be relevant to understanding electric-field noise in ion traps; for example defect motion in the solid state and surface adsorbate binding energies. Studying these processes may aid in identifying the origin of excess electric-field noise in ion traps -- a major source of ion motional decoherence limiting the performance of surface traps as quantum devices.

Keywords

Cite

@article{arxiv.1809.05624,
  title  = {Electric-field noise from thermally-activated fluctuators in a surface ion trap},
  author = {Crystal Noel and Maya Berlin-Udi and Clemens Matthiesen and Jessica Yu and Yi Zhou and Vincenzo Lordi and Hartmut Häffner},
  journal= {arXiv preprint arXiv:1809.05624},
  year   = {2019}
}

Comments

Version accepted by PRA, significantly expanded compared to v1