Optimised domain-engineered crystals for pure telecom photon sources

  • Pickston A
  • Graffitti F
  • Barrow P
  • et al.
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Abstract

The ideal photon-pair source for building up multi-qubit states needs to produce indistinguishable photons with high efficiency. Indistinguishability is crucial for minimising errors in two-photon interference, central to building larger states, while high heralding rates will be needed to overcome unfavourable loss scaling. Domain engineering in parametric down-conversion sources negates the need for lossy spectral filtering allowing one to satisfy these conditions inherently within the source design. Here, we present a telecom-wavelength parametric down-conversion photon source that operates on the achievable limit of domain engineering. We generate photons from independent sources which achieve two-photon interference visibilities of up to 98.6 ± 1.1% without narrow-band filtering. As a consequence, we reach net heralding efficiencies of up to 67.5%, which corresponds to collection efficiencies exceeding 90%.

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Pickston, A., Graffitti, F., Barrow, P., Morrison, C. L., Ho, J., Brańczyk, A. M., & Fedrizzi, A. (2021). Optimised domain-engineered crystals for pure telecom photon sources. Optics Express, 29(5), 6991. https://doi.org/10.1364/oe.416843

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