Atomic frequency reference at 1033 nm for ytterbium (Yb)-doped fiber lasers and applications exploiting a rubidium (Rb) 5 to 4 one-colour two-photon transition
arXiv:1612.01815 · doi:10.1364/OE.25.007960
Abstract
We demonstrate a two-photon transition of rubidium (Rb) atoms from the ground state (5) to the excited state (4), using a home-built ytterbium (Yb)-doped fiber amplifier at 1033 nm. This is the first demonstration of an atomic frequency reference at 1033 nm as well as of a one-colour two-photon transition for the above energy levels. A simple optical setup is presented for the two-photon transition fluorescence spectroscopy, which is useful for frequency stabilization for a broad class of lasers. This spectroscopy has potential applications in the fiber laser industry as a frequency reference, particularly for the Yb-doped fiber lasers. This two-photon transition also has applications in atomic physics as a background- free high- resolution atom detection and for quantum communication, which is outlined in this article.
References in corpus (1)
Cited by in corpus (5)
- Observation of the Rb to electric quadrupole transition at 516.6 nm mediated via an optical nanofibre
- Enhancement of the quadrupole interaction of an atom with guided light of an ultrathin optical fiber
- A simple, narrow, and robust atomic frequency reference at 993 nm exploiting the rubidium (Rb) to transition using one-color two-photon excitation
- An optical atomic clock using states of rubidium
- Spectroscopy of the Rb 4 state for hyperfine-structure determination