12-Photon Entanglement and Scalable Scattershot Boson Sampling with Optimal Entangled-Photon Pairs from Parametric Down-Conversion

Entangled-photon sources with simultaneously near-unity heralding efficiency and indistinguishability are the fundamental elements for scalable photonic quantum technologies. We design and realize a degenerate telecommunication wavelength entangled-photon source from an ultrafast pulsed laser pumped...

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Veröffentlicht in:Physical review letters 2018-12, Vol.121 (25), p.250505-250505, Article 250505
Hauptverfasser: Zhong, Han-Sen, Li, Yuan, Li, Wei, Peng, Li-Chao, Su, Zu-En, Hu, Yi, He, Yu-Ming, Ding, Xing, Zhang, Weijun, Li, Hao, Zhang, Lu, Wang, Zhen, You, Lixing, Wang, Xi-Lin, Jiang, Xiao, Li, Li, Chen, Yu-Ao, Liu, Nai-Le, Lu, Chao-Yang, Pan, Jian-Wei
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Sprache:eng
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Zusammenfassung:Entangled-photon sources with simultaneously near-unity heralding efficiency and indistinguishability are the fundamental elements for scalable photonic quantum technologies. We design and realize a degenerate telecommunication wavelength entangled-photon source from an ultrafast pulsed laser pumped spontaneous parametric down-conversion (SPDC), which shows simultaneously 97% heralding efficiency and 96% indistinguishability between independent single photons without narrow-band filtering. Such a beamlike and frequency-uncorrelated SPDC source allows generation of the first 12-photon genuine entanglement with a state fidelity of 0.572±0.024. We further demonstrate a blueprint of scalable scattershot boson sampling using 12 SPDC sources and a 12×12 mode interferometer for three-, four-, and five-boson sampling, which yields count rates more than 4 orders of magnitude higher than all previous SPDC experiments.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.121.250505