arXiv · 1003.2583
Direct absorption imaging of ultracold polar molecules
Abstract
We demonstrate a scheme for direct absorption imaging of an ultracold ground-state polar molecular gas near quantum degeneracy. A challenge in imaging molecules is the lack of closed optical cycling transitions. Our technique relies on photon shot-noise limited absorption imaging on a strong bound-bound molecular transition. We present a systematic characterization of this imaging technique. Using this technique combined with time-of-flight (TOF) expansion, we demonstrate the capability to determine momentum and spatial distributions for the molecular gas. We anticipate that this imaging technique will be a powerful tool for studying molecular quantum gases.
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D. Wang, B. Neyenhuis, M. H. G. de Miranda, K. -K. Ni, S. Ospelkaus, D. S. Jin, J. Ye. 2010-03-12. Direct absorption imaging of ultracold polar molecules. https://doi.org/10.1103/physreva.81.061404
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