English

Direct Observation of Coherent Population Trapping in a Superconducting Artificial Atom

Quantum Physics 2010-04-23 v3

Abstract

The phenomenon of Coherent Population Trapping (CPT) of an atom (or solid state "artificial atom"), and the associated effect of Electromagnetically Induced Transparency (EIT), are clear demonstrations of quantum interference due to coherence in multi-level quantum systems. We report observation of CPT in a superconducting phase qubit by simultaneously driving two coherent transitions in a Λ\Lambda-type configuration, utilizing the three lowest lying levels of a local minimum of a phase qubit. We observe 60(±7)60(\pm 7)% suppression of excited state population under conditions of CPT resonance. We present data and matching theoretical simulations showing the development of CPT in time. Finally, we used the observed time dependence of the excited state population to characterize quantum dephasing times of the system.

Keywords

Cite

@article{arxiv.0912.3291,
  title  = {Direct Observation of Coherent Population Trapping in a Superconducting Artificial Atom},
  author = {William R. Kelly and Zachary Dutton and John Schlafer and Bhaskar Mookerji and Thomas A. Ohki and Jeffrey S. Kline and David P. Pappas},
  journal= {arXiv preprint arXiv:0912.3291},
  year   = {2010}
}

Comments

5 pages, 4 figures