Directional Bistability and Nonreciprocal Lasing with Cold Atoms in a Ring Cavity

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Abstract

We demonstrate lasing into counterpropagating modes of a ring cavity using a gas of cold atoms as a gain medium. The laser operates under the usual conditions of magneto-optical trapping with no additional fields. We characterize the threshold behavior of the laser and measure the second-order optical coherence. The laser emission exhibits directional bistability, switching randomly between clockwise and counterclockwise modes, and a tunable nonreciprocity is observed as the atoms are displaced along the cavity axis.

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Megyeri, B., Harvie, G., Lampis, A., & Goldwin, J. (2018). Directional Bistability and Nonreciprocal Lasing with Cold Atoms in a Ring Cavity. Physical Review Letters, 121(16). https://doi.org/10.1103/PhysRevLett.121.163603

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