4.6 Article

Limits on the heralding efficiencies and spectral purities of spectrally filtered single photons from photon-pair sources

期刊

PHYSICAL REVIEW A
卷 95, 期 6, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevA.95.061803

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资金

  1. Natural Sciences and Engineering Research Council of Canada
  2. Marie Curie Initial Training Network PICQUE (Photonic Integrated Compound Quantum Encoding) [608062]
  3. DFG (Deutsche Forschungsgemeinschaft) [SI 1115/4-1]
  4. DFG (Gottfried Wilhelm Leibniz-Preis)

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Photon pairs produced by parametric down-conversion or four-wave mixing can interfere with each other in multiport interferometers or carry entanglement between distant nodes for use in entanglement swapping. This requires the photons to be spectrally pure to ensure good interference and have high heralding efficiency to know accurately the number of photons involved and to maintain high rates as the number of photons grows. Spectral filtering is often used to remove noise and define spectral properties. For heralded single photons high purity and heralding efficiency are possible by filtering the heralding arm, but when both photons in typical pair sources are filtered, we show that the heralding efficiency of one or both of the photons is strongly reduced even by ideal spectral filters with 100% transmission in the passband: any improvement in reduced-state spectral purity from filtering comes at the cost of lowered heralding efficiency. We consider the fidelity to a pure, lossless single photon, symmetrize it to include both photons of the pair, and show this quantity is intrinsically limited for sources with spectral correlation. We then provide a framework for this effect for benchmarking common photon-pair sources and present an experiment where we vary the photon filter bandwidths and measure the increase in purity and corresponding reduction in heralding efficiency.

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