Interferometric thermometry of a single sub-Doppler cooled atom
Abstract
Efficient self-interference of single-photons emitted by a sideband-cooled Barium ion is demonstrated. First, the technical tools for performing efficient coupling to the quadrupolar transition of a single Ba ion are presented. We show efficient Rabi oscillations of the internal state of the ion using a highly stabilized 1.76 fiber laser resonant with the S-D transition. We then show sideband cooling of the ion's motional modes and use it as a means to enhance the interference contrast of the ion with its mirror-image to up to 90%. Last, we measure the dependence of the self-interference contrast on the mean phonon number, thereby demonstrating the potential of the set-up for single-atom thermometry close to the motional ground state.
Cite
@article{arxiv.1202.4559,
title = {Interferometric thermometry of a single sub-Doppler cooled atom},
author = {L. Slodička and G. Hétet and N. Röck and S. Gerber and P. Schindler and M. Kumph and M. Hennrich and R. Blatt},
journal= {arXiv preprint arXiv:1202.4559},
year = {2015}
}
Comments
6 pages, 6 figures