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Dynamically Probing Ultracold Lattice Gases via Rydberg Molecules

Atomic Physics 2015-10-28 v1 Quantum Gases Quantum Physics

Abstract

We show that the excitation of long-range Rydberg molecules in a three-dimensional optical lattice can be used as a position- and time-sensitive probe of the site occupancy in the system. To this end, we detect the ions which are continuously generated by the decay of the formed Rydberg molecules. While a superfluid gas shows molecule formation for all parameters, a Mott insulator with n=1n=1 filling reveals a strong suppression of the number of formed molecules. In the limit of weak probing, the technique can be used to probe the superfluid to Mott-insulator transition in real-time. Our method can be extended to higher fillings and has various applications for the real-time diagnosis and manipulation of ultracold lattice gases.

Keywords

Cite

@article{arxiv.1506.05955,
  title  = {Dynamically Probing Ultracold Lattice Gases via Rydberg Molecules},
  author = {Torsten Manthey and Thomas Niederprüm and Oliver Thomas and Herwig Ott},
  journal= {arXiv preprint arXiv:1506.05955},
  year   = {2015}
}

Comments

6 pages, 5 figures