Laser-cooled atoms inside a hollow-core photonic-crystal fiber

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Abstract

We describe the loading of laser-cooled rubidium atoms into a single-mode hollow-core photonic-crystal fiber. Inside the fiber, the atoms are confined by a far-detuned optical trap and probed by a weak resonant beam. We describe different loading methods and compare their trade-offs in terms of implementation complexity and atom-loading efficiency. The most efficient procedure results in loading of ∼30,000 rubidium atoms, which creates a medium with an optical depth of ∼180 inside the fiber. Compared to our earlier study this represents a sixfold increase in the maximum achieved optical depth in this system. © 2011 American Physical Society.

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Bajcsy, M., Hofferberth, S., Peyronel, T., Balic, V., Liang, Q., Zibrov, A. S., … Lukin, M. D. (2011). Laser-cooled atoms inside a hollow-core photonic-crystal fiber. Physical Review A - Atomic, Molecular, and Optical Physics, 83(6). https://doi.org/10.1103/PhysRevA.83.063830

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