arXiv · 2012.00246
Deterministic single-atom source of quasi-superradiant $N$-photon pulses
Abstract
We propose a single-atom, cavity quantum electrodynamics system, compatible with recently demonstrated, fiber-integrated micro- and nano-cavity setups, for the on-demand production of optical number-state, $0N$-state, and binomial-code-state pulses. The scheme makes use of Raman transitions within an entire atomic ground-state hyperfine level and operates with laser and cavity fields detuned from the atomic transition by much more than the excited-state hyperfine splitting. This enables reduction of the dynamics to that of a simple, cavity-damped Tavis-Cummings model with the collective spin determined by the total angular momentum of the ground hyperfine level.
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Caspar Groiseau, Alexander E. J. Elliott, Stuart J. Masson, Scott Parkins. 2020-12-01. Deterministic single-atom source of quasi-superradiant $N$-photon pulses. https://doi.org/10.1103/physrevlett.127.033602
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