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We experimentally investigate atom-cavity transmission spectra with three-level atoms inside an optical cavity. At large cavity frequency detuning, the bright- and dark-polariton three-peak structure becomes asymmetric and the peaks can merge together to create interference.
We study theoretically and experimentally the strongly-coupled, nonlinear regime of a hot vapor of three-level atoms in an optical cavity. Interesting effects include lasing without inversion and polariton peak splittings.
Distinct peaks associated with atom-cavity polaritons are observed in the transmission spectrum of three-level rubidium atoms in an optically-dense vapor cell inside an optical ring cavity.
Distinct peaks associated with atom-cavity polaritons are observed in the transmission spectrum of three-level rubidium atoms in an optically-dense vapor cell inside an optical ring cavity.
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