English

Two-photon Quantum Interference and Entanglement at 2 {\mu}m

Quantum Physics 2020-03-31 v2 Optics

Abstract

Quantum-enhanced optical systems operating within the 2- to 2.5-μ\mum spectral region have the potential to revolutionize emerging applications in communications, sensing, and metrology. However, to date, sources of entangled photons have been realized mainly in the near-infrared 700- to 1550-nm spectral window. Here, using custom-designed lithium niobate crystals for spontaneous parametric down-conversion and tailored superconducting nanowire single-photon detectors, we demonstrate two-photon interference and polarization-entangled photon pairs at 2090 nm. These results open the 2- to 2.5-μ\mum mid-infrared window for the development of optical quantum technologies such as quantum key distribution in next-generation mid-infrared fiber communication systems and future Earth-to-satellite communications.

Keywords

Cite

@article{arxiv.1906.02082,
  title  = {Two-photon Quantum Interference and Entanglement at 2 {\mu}m},
  author = {Shashi Prabhakar and Taylor Shields and Adetunmise Dada and Mehdi Ebrahim and Gregor G. Taylor and Dmitry Morozov and Kleanthis Erotokritou and Shigehito Miki and Masahiro Yabuno and Hirotaka Terai and Corin Gawith and Michael Kues and Lucia Caspani and Robert H. Hadfield and Matteo Clerici},
  journal= {arXiv preprint arXiv:1906.02082},
  year   = {2020}
}
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