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Quantum entanglement on photonic chips: a review

Xiaojiong Chen, Zhaorong Fu, Qihuang Gong, Jianwei Wang

2021Advanced Photonics55 citationsDOIOpen Access PDF

Abstract

Entanglement is one of the most vital properties of quantum mechanical systems, and it forms the backbone of quantum information technologies. Taking advantage of nano/microfabrication and particularly complementary metal-oxide-semiconductor manufacturing technologies, photonic integrated circuits (PICs) have emerged as a versatile platform for the generation, manipulation, and measurement of entangled photonic states. We summarize the recent progress of quantum entanglement on PICs, starting from the generation of nonentangled and entangled biphoton states, to the generation of entangled states of multiple photons, multiple dimensions, and multiple degrees of freedom, as well as their applications for quantum information processing.

Topics & Concepts

Quantum entanglementPhoton entanglementPhotonicsQuantum sensorQuantum technologyQuantum teleportationPhysicsQuantum informationW statePhotonQuantumMicrofabricationQuantum mechanicsQuantum networkOpen quantum systemFabricationAlternative medicinePathologyMedicineQuantum Information and CryptographyNeural Networks and Reservoir ComputingPhotonic and Optical Devices