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Lasing on a narrow transition in a cold thermal strontium ensemble

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arxiv 1903.12593 v2 pith:4GTBI2RZ submitted 2019-03-29 physics.atom-ph quant-ph

classification physics.atom-phquant-ph
keywords ensemblelasingsystematomicatomscharacterizecoldinvestigate
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abstract

Highly stable laser sources based on narrow atomic transitions provide a promising platform for direct generation of stable and accurate optical frequencies. Here we investigate a simple system operating in the high-temperature regime of cold atoms. The interaction between a thermal ensemble of $^{88}$Sr at mK temperatures and a medium-finesse cavity produces strong collective coupling and facilitates high atomic coherence which causes lasing on the dipole forbidden $^1$S$_0 \leftrightarrow ^3$P$_1$ transition. We experimentally and theoretically characterize the lasing threshold and evolution of such a system, and investigate decoherence effects in an unconfined ensemble. We model the system using a Tavis-Cummings model, and characterize velocity-dependent dynamics of the atoms as well as the dependency on the cavity-detuning.

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Cited by 1 Pith paper

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  1. Coupling atoms to cavities with narrow linewidth optical transitions: Applications to frequency metrology

    physics.atom-ph 2019-08 unverdicted

    A tutorial review of atom-cavity coupling on narrow linewidth optical transitions and its applications to optical frequency metrology; it contains no new results.

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