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Beyond Optical Molasses: 3D Raman Sideband Cooling of Atomic Cesium to High Phase-Space Density

by: Andrew J. Kerman, Vladan Vuletić, Cheng Chin, Steven Chu
Physical Review Letters, Vol. 84, No. 3. (Jan 2000), pp. 439-442, doi:10.1103/physrevlett.84.439  Key: citeulike:5935887

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Abstract

We demonstrate a simple, general purpose method to cool neutral atoms. A sample containing 3×108 cesium atoms prepared in a magneto-optical trap is cooled and simultaneously spin polarized in 10 ms at a density of 1.1×1011 cm-3 to a phase space density nλdB3 = 1/500, which is almost 3 orders of magnitude higher than attainable in free space with optical molasses. The technique is based on 3D degenerate Raman sideband cooling in optical lattices and remains efficient even at densities where the mean lattice site occupation is close to unity.


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