arXiv · 1310.4014
Gray molasses cooling of $^{39}$K to a high phase-space density
Abstract
We present new techniques in cooling 39K atoms using laser light close to the D1 transition. First, a new compressed-MOT configuration is taking advantage of gray molasses type cooling induced by blue-detuned D1 light. It yields an optimized density of atoms. Then, we use pure D1 gray molasses to further cool the atoms to an ultra-low temperature of 6\,$μ$K. The resulting phase-space density is $2 \times 10^{-4}$ and will ease future experiments with ultracold potassium. As an example, we use it to directly load up to $3\times 10^7$ atoms in a far detuned optical trap, a result that opens the way to the all-optical production of potassium degenerate gases.
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G. Salomon, L. Fouché, P. Wang, A. Aspect, P. Bouyer, T. Bourdel. 2013-10-15. Gray molasses cooling of $^{39}$K to a high phase-space density. https://doi.org/10.1209/0295-5075%2F104%2F63002
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