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A Single-Photon-compatible Telecom-C-Band Quantum Memory in a Hot Atomic Gas

Quantum Physics 2022-11-09 v1 Atomic Physics

Abstract

The efficient storage and on-demand retrieval of quantum optical states that are compatible with the telecommunications C-band is a requirement for future terrestrial-based quantum optical networking. Spectrum in the C-band minimises optical fiber-propagation losses, and broad optical bandwidth facilitates high-speed networking protocols. Here we report on a telecommunication wavelength and bandwidth compatible quantum memory. Using the Off-Resonant Cascaded Absorption protocol in hot 87^{87}Rb vapour, we demonstrate a total memory efficiency of 20.90(1)%20.90(1)\,\% with a Doppler-limited storage time of 1.10(2)1.10(2)\,ns. We characterise the memory performance with weak coherent states, demonstrating signal-to-noise ratios greater than unity for mean photon number inputs above 4.5(6)×1064.5(6)\times10^{-6} per pulse.

Keywords

Cite

@article{arxiv.2211.04415,
  title  = {A Single-Photon-compatible Telecom-C-Band Quantum Memory in a Hot Atomic Gas},
  author = {S. E. Thomas and S. Sagona-Stophel and Z. Schofield and I. A. Walmsley and P. M. Ledingham},
  journal= {arXiv preprint arXiv:2211.04415},
  year   = {2022}
}
R2 v1 2026-06-28T05:26:39.694Z