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Integrated Source of Spectrally Filtered Correlated Photons for Large-Scale Quantum Photonic Systems

机译:用于大型量子光子系统的频谱滤波相关光子的集成源

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We demonstrate the generation of quantum-correlated photon pairs combined with the spectral filtering of the pump field by more than 95?dB on a single silicon chip using electrically tunable ring resonators and passive Bragg reflectors. Moreover, we perform the demultiplexing and routing of signal and idler photons after transferring them via an optical fiber to a second identical chip. Nonclassical two-photon temporal correlations with a coincidence-to-accidental ratio of 50 are measured without further off-chip filtering. Our system, fabricated with high yield and reproducibility in a CMOS-compatible process, paves the way toward large-scale quantum photonic circuits by allowing sources and detectors of single photons to be integrated on the same chip.
机译:我们展示了使用电动环形谐振器和被动布拉格反射器在单个硅芯片上的量子相关光子对的产生与泵场的光谱滤波。此外,在通过光纤将它们转移到第二相同芯片之后,我们执行信号和惰光子的解复用和路由。测量与意外比例为50的非生化二光子的时间相关性,无需进一步的片状滤波。通过CMOS兼容过程的高产量和再现性制造的系统,通过允许单个光子的源和探测器集成在同一芯片上来铺平朝向大规模量子光子电路的方式。

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