arXiv · 1412.6754
Inhomogeneous broadening of optical transitions of 87Rb atoms in an optical nanofiber trap
Abstract
We experimentally demonstrate optical trapping of 87Rb atoms using a two-color evanescent field around an optical nanofiber. In our trapping geometry, a blue-detuned traveling wave whose polarization is nearly parallel to the polarization of a red-detuned standing wave produces significant vector light shifts that lead to broadening of the absorption profile of a near-resonant beam at the trapping site. A model that includes scalar, vector, and tensor light shifts of the probe transition $5S_{1/2}$-$5P_{3/2}$ from the trapping beams, weighted by the temperature-dependent position of the atoms in the trap, qualitatively describes the observed asymmetric profile and explains differences with previous experiments that used Cs atoms. The model provides a consistent way to extract the number of atoms in the trap.
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J. Lee, J. A. Grover, J. E. Hoffman, L. A. Orozco, S. L. Rolston. 2014-12-21. Inhomogeneous broadening of optical transitions of 87Rb atoms in an optical nanofiber trap. https://doi.org/10.1088/0953-4075/48/16/165004
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