Tuning individual atomic detunings and drive phase in a two-atom cavity-QED system simultaneously suppresses one- and three-photon backgrounds while enhancing two-photon output, and also enables correlated fluorescence photon pairs.
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Chiral unidirectional interaction in cascaded cavity prolongs excited state lifetime in qubit-magnon system, suppressing re-excitation to increase purity and number of two-magnon bundles.
citing papers explorer
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Enhanced two-photon sources in a cavity-coupled two-atom system
Tuning individual atomic detunings and drive phase in a two-atom cavity-QED system simultaneously suppresses one- and three-photon backgrounds while enhancing two-photon output, and also enables correlated fluorescence photon pairs.
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Chiral interaction enhanced magnon bundle emission
Chiral unidirectional interaction in cascaded cavity prolongs excited state lifetime in qubit-magnon system, suppressing re-excitation to increase purity and number of two-magnon bundles.