Unconditional polarization qubit quantum memory at room temperature

ORAL

Abstract

The creation of global quantum key distribution and quantum communication networks requires multiple operational quantum memories. Achieving a considerable reduction in experimental and cost overhead in these implementations is thus a major challenge. Here we present a polarization qubit quantum memory fully-operational at 330K, an unheard frontier in the development of useful qubit quantum technology. This result is achieved through extensive study of how optical response of cold atomic medium is transformed by the motion of atoms at room temperature leading to an optimal characterization of room temperature quantum light-matter interfaces. Our quantum memory shows an average fidelity of 86.6 $\pm$ 0.6{\%} for optical pulses containing on average 1 photon per pulse, thereby defeating any classical strategy exploiting the non-unitary character of the memory efficiency. Our system significantly decreases the technological overhead required to achieve quantum memory operation and will serve as a building block for scalable and technologically simpler many-memory quantum machines.

Authors

  • Mehdi Namazi

    State Univ of NY- Stony Brook

  • Connor Kupchak

    State Univ of NY- Stony Brook

  • Bertus Jordaan

    Stony Brook University, State Univ of NY- Stony Brook

  • Reihaneh Shahrokhshahi

    State Univ of NY- Stony Brook

  • Eden Figueroa

    State Univ of NY- Stony Brook