arXiv · 1403.3545
Optomechanical atom-cavity interaction in the sub-recoil regime
Abstract
We study the optomechanical interaction of a Bose-Einstein condensate with a single longitudinal mode of an ultra-high finesse standing wave optical resonator. As a unique feature the resonator combines three extreme regimes, previously not realized together, i.e., strong cooperative coupling, cavity dominated scattering with a Purcell factor far above unity, and sub-recoil resolution provided by a cavity damping rate smaller than four times the single photon recoil frequency. We present experimental observations in good agreement with a two-mode model predicting highly non-linear dynamics with signatures as bistability, hysteresis, persistent oscillations, and superradiant back-scattering instabilities.
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H Keßler, J Klinder, M Wolke, A Hemmerich. 2014-03-14. Optomechanical atom-cavity interaction in the sub-recoil regime. https://doi.org/10.1088/1367-2630/16/5/053008
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