Publication | Open Access
Electromagnetically induced transparency with superradiant and subradiant states
11
Citations
42
References
2017
Year
PhotonicsQuantum ScienceQuantum PhotonicsEngineeringQuantum OpticPhysicsOptical PropertiesInduced TransparencyCavity QedApplied PhysicsUltracold AtomAtomic PhysicsTransparency PointSubradiant StatesQuantum Photonic DeviceSynchrotron RadiationEit SpectraElectromagnetic Metamaterials
We construct electromagnetically induced transparency (EIT) by dynamically coupling a superradiant state with a subradiant state. The superradiant and subradiant states with enhanced and inhibited decay rates act as the excited and metastable states in EIT, respectively. Their energy difference determined by the distance between the atoms can be measured by the EIT spectra, which renders this method useful in subwavelength metrology. The scheme can also be applied to many atoms in nuclear quantum optics, where the transparency point due to counter-rotating wave terms can be observed.
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