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Entanglement distribution in hybrid discrete- and continuous-variable microwave networks

ORAL

Abstract

Distributing entanglement between spatially separated nodes of a large-scale quantum network is a fundamentally important milestone for quantum information processing tasks. In particular, quantum entanglement is needed for quantum teleportation or logical quantum gates with remote qubits. In our experiment, we employ a superconducting transmon qubit in a superconducting 3D cavity coupled to a microwave two-mode squeezed (TMS) bath. The latter is provided by externally flux-driven Josephson parametric amplifiers. We experimentally investigate a build-up of entanglement between the remote superconducting nodes due to their interaction with the common, quantum-correlated, reservoir. The corresponding entanglement conversion between continuous- and discrete-variables allows for promising and robust quantum microwave network architectures. Finally, we discuss possible extensions and applications for distributed quantum computing.

Presenters

  • Simon Gandorfer

    Walther-Meißner-Institut, Walther-Meißner-Institut, Technical University Munich, Walther-Meißner-Institut; Technical University of Munich

Authors

  • Simon Gandorfer

    Walther-Meißner-Institut, Walther-Meißner-Institut, Technical University Munich, Walther-Meißner-Institut; Technical University of Munich

  • Joan Agustí Bruzón

    TU Munich & Walther-Meißner-Institut, Walther-Meißner-Institut, Walther-Meißner-Institut, Technical University Munich

  • Maria-Teresa Handschuh

    Walther-Meißner-Institut, Walther-Meißner-Institut, Technical University Munich, Walther-Meißner-Institut; Technical University of Munich, TU Munich

  • Kedar E Honasoge

    Walther-Meißner-Institut, Walther-Meißner-Institut, Technical University Munich, Walther-Meißner-Institut; Technical University of Munich, Walther Meissner Inst, TU Munich

  • Achim Marx

    Walther-Meissner-Institute, Walther-Meißner-Institut

  • Peter Rabl

    TU Munich & Walther-Meißner-Institut, Walther Meissner Inst, Walther-Meißner-Institut, Technical University Munich, Munich Center for Quantum Science and Technology

  • Rudolf Gross

    Walther-Meißner-Institut, Bayerische Akademie der Wissenschaften, Walther-Meissner-Institute, Walther-Meißner-Institut, Walther-Meißner-Institut, Technical University Munich, Munich Center for Quantum Science and Technology, Walther-Meißner-Institut; Technical University of Munich; Munich Center for Quantum Science and Technologies

  • Kirill G Fedorov

    TU Munich & Walther-Meißner-Institut, Walther-Meissner-Institute, Walther-Meißner-Institut, Walther-Meißner-Institut, Technical University Munich, Munich Center for Quantum Science and Technology, Walther-Meißner-Institut; Technical University of Munich; Munich Center for Quantum Science and Technologies