Laser-cooled atoms inside a hollow-core photonic-crystal fiber
Atomic Physics
2015-05-28 v2 Optics
Quantum Physics
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 optical depth ~180 inside the fiber. Compared to our earlier study this represents a six-fold increase in maximum achieved optical depth in this system.
Keywords
Cite
@article{arxiv.1104.5220,
title = {Laser-cooled atoms inside a hollow-core photonic-crystal fiber},
author = {M. Bajcsy and S. Hofferberth and T. Peyronel and V. Balic and Q. Liang and A. S. Zibrov and V. Vuletic and M. D. Lukin},
journal= {arXiv preprint arXiv:1104.5220},
year = {2015}
}
Comments
10 pages, 9 figures