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Ultra-bright multiplexed energy-time entangled photon generation from lithium niobate on insulator chip

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arxiv 2012.06092 v1 pith:F5VGSA2S submitted 2020-12-11 quant-ph physics.optics

Ultra-bright multiplexed energy-time entangled photon generation from lithium niobate on insulator chip

classification quant-ph physics.optics
keywords chipenergy-timephotonbroaddataentangledentanglementhigh-flux
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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High-flux entangled photon source is the key resource for quantum optical study and application. Here it is realized in a lithium niobate on isolator (LNOI) chip, with 2.79*10^11 Hz/mW photon pair rate and 1.53*10^9 Hz/nm/mW spectral brightness. These data are boosted by over two orders of magnitude compared to existing technologies. A 130-nm broad bandwidth is engineered for 8-channel multiplexed energy-time entanglement. Harnessed by high-extinction frequency correlation and Franson interferences up to 99.17% visibility, such energy-time entanglement multiplexing further enhances high-flux data rate, and warrants broad applications in quantum information processing on a chip.

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