Rydberg fluorescence plus Autler-Townes splitting yields background-free, absolutely calibrated spatial imaging of millimeter-wave electric fields in a warm atomic vapor.
Electromagnetically induced transparency: Optics in coherent media
2 Pith papers cite this work. Polarity classification is still indexing.
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Theoretical steady-state analysis shows two-photon resonance creates a dark state that boosts driving-field control over biphoton brightness and correlations in a Rydberg cavity-QED setup.
citing papers explorer
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Background-free calibrated electric-field imaging with Rydberg-state fluorescence and Autler-Townes splitting
Rydberg fluorescence plus Autler-Townes splitting yields background-free, absolutely calibrated spatial imaging of millimeter-wave electric fields in a warm atomic vapor.
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Coherent manipulation of the biphoton generation in cavity-QED system
Theoretical steady-state analysis shows two-photon resonance creates a dark state that boosts driving-field control over biphoton brightness and correlations in a Rydberg cavity-QED setup.