Publication | Closed Access
Quantum nonreciprocity based on electromagnetically induced transparency in chiral quantum-optical systems
25
Citations
51
References
2021
Year
Quantum PhotonicsEngineeringInduced TransparencyQuantum ComputingQuantum NonreciprocityOptical PropertiesPhotonic Integrated CircuitOptical SystemsQuantum EntanglementNanophotonicsPhotonicsQuantum SciencePhysicsHigh IsolationPhotonic DeviceQuantum OpticNatural SciencesApplied PhysicsLow Insertion LossQuantum Photonic DeviceOptoelectronicsChiral Quantum-optical SystemsOptical Logic Gate
On-chip single-photon nonreciprocal devices with high isolation and low insertion loss become a key element in quantum information processing. Based on electromagnetically induced transparency in chiral quantum systems, a single-photon isolator and a single-photon circulator are obtained without requiring unbalanced coupling. These devices have high isolation and low insertion loss. Moreover, their bandwidths are significantly broadened with the assistance of electromagnetically induced transparency.
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