dorsal/arxiv
View SchemaDeterministic loading of individual atoms to a high-finesse optical cavity
| Authors | Kevin M. Fortier, Soo Y. Kim, Michael J. Gibbons, Peyman Ahmadi, Michael S. Chapman |
|---|---|
| Categories | |
| ArXiv ID | quant-ph/0703156 |
| URL | https://arxiv.org/abs/quant-ph/0703156 |
| DOI | 10.1103/PhysRevLett.98.233601 |
Abstract
Individual laser cooled atoms are delivered on demand from a single atom magneto-optic trap to a high-finesse optical cavity using an atom conveyor. Strong coupling of the atom with the cavity field allows simultaneous cooling and detection of individual atoms for time scales exceeding 15 s. The single atom scatter rate is studied as a function of probe-cavity detuning and probe Rabi frequency, and the experimental results are in good agreement with theoretical predictions. We demonstrate the ability to manipulate the position of a single atom relative to the cavity mode with excellent control and reproducibility.
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"abstract": "Individual laser cooled atoms are delivered on demand from a single atom\nmagneto-optic trap to a high-finesse optical cavity using an atom conveyor.\nStrong coupling of the atom with the cavity field allows simultaneous cooling\nand detection of individual atoms for time scales exceeding 15 s. The single\natom scatter rate is studied as a function of probe-cavity detuning and probe\nRabi frequency, and the experimental results are in good agreement with\ntheoretical predictions. We demonstrate the ability to manipulate the position\nof a single atom relative to the cavity mode with excellent control and\nreproducibility.",
"arxiv_id": "quant-ph/0703156",
"authors": [
"Kevin M. Fortier",
"Soo Y. Kim",
"Michael J. Gibbons",
"Peyman Ahmadi",
"Michael S. Chapman"
],
"categories": [
"quant-ph"
],
"doi": "10.1103/PhysRevLett.98.233601",
"title": "Deterministic loading of individual atoms to a high-finesse optical cavity",
"url": "https://arxiv.org/abs/quant-ph/0703156"
},
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