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Non-destructive shadowgraph imaging of ultracold atoms

Atomic Physics 2016-11-03 v2 Quantum Gases Quantum Physics

Abstract

An imaging system is presented that is capable of far-detuned non-destructive imaging of a Bose-Einstein condensate with the signal proportional to the second spatial derivative of the density. Whilst demonstrated with application to 85Rb^{85}\text{Rb}, the technique generalizes to other atomic species and is shown to be capable of a signal to noise of 25{\sim}25 at 11GHz detuning with 100100 in-trap images showing no observable heating or atom loss. The technique is also applied to the observation of individual trajectories of stochastic dynamics inaccessible to single shot imaging. Coupled with a fast optical phase lock loop, the system is capable of dynamically switching to resonant absorption imaging during the experiment.

Keywords

Cite

@article{arxiv.1601.04425,
  title  = {Non-destructive shadowgraph imaging of ultracold atoms},
  author = {Paul B. Wigley and Patrick J. Everitt and Kyle S. Hardman and Michael R. Hush and Chunhua Wei and Mahasen A. Sooriyabandara and Manju Perumbil and John D. Close and Nicholas P. Robins and Carlos C. N. Kuhn},
  journal= {arXiv preprint arXiv:1601.04425},
  year   = {2016}
}

Comments

4 pages, 5 figures