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In-situ entanglement generation based on rare-earth quantum memory coupled to a nonlinear cavity (Part I: experimental proposal)

ORAL

Abstract

Storage of entangled photons in a quantum memory is critical for optical quantum networks. However, the experimental demonstrations so far face many challenges including source-memory impedance mismatch as well as limited storage times. Here we propose a new scheme that combines a nonlinear optical cavity with an ensemble atomic memory to generate photon-memory entanglement in-situ. In this first talk of the series, we discuss an experiment that consists of an erbium-based solid-state quantum memory coupled to a χ(3) nonlinear resonator. We estimate that our design is able to achieve high cooperativity coupling and multimode memory using 167Er3+ hyperfine levels. We also present the spin coherence characterizations of candidate memory materials (167Er3+:YSO and 167Er3+:Y2O3) that can enable long-distance entanglement distribution between remote memories.

Presenters

  • Hong Qiao

    University of Chicago

Authors

  • Hong Qiao

    University of Chicago

  • Hoi-Kwan Lau

    Simon Fraser Univ, Dept of Physics, Simon Fraser University, Simon Fraser University

  • Aashish Clerk

    Pritzker School of Molecular Engineering, University of Chicago, University of Chicago, Pritzker School of Molecular Engineering, University of Chicago, Chicago, IL 60637, USA

  • Tian Zhong

    University of Chicago