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Trade off-free entanglement stabilization in a superconducting qutrit-qubit system

Author

Listed:
  • T. Brown

    (University of Massachusetts
    Quantum Engineering and Computing, Raytheon BBN)

  • E. Doucet

    (University of Massachusetts)

  • D. Ristè

    (Quantum Engineering and Computing, Raytheon BBN
    Keysight Technologies)

  • G. Ribeill

    (Quantum Engineering and Computing, Raytheon BBN)

  • K. Cicak

    (National Institute of Standards and Technology)

  • J. Aumentado

    (National Institute of Standards and Technology)

  • R. Simmonds

    (National Institute of Standards and Technology)

  • L. Govia

    (Quantum Engineering and Computing, Raytheon BBN)

  • A. Kamal

    (University of Massachusetts)

  • L. Ranzani

    (Quantum Engineering and Computing, Raytheon BBN)

Abstract

Quantum reservoir engineering is a powerful framework for autonomous quantum state preparation and error correction. However, traditional approaches to reservoir engineering are hindered by unavoidable coherent leakage out of the target state, which imposes an inherent trade off between achievable steady-state state fidelity and stabilization rate. In this work we demonstrate a protocol that achieves trade off-free Bell state stabilization in a qutrit-qubit system realized on a circuit-QED platform. We accomplish this by creating a purely dissipative channel for population transfer into the target state, mediated by strong parametric interactions coupling the second-excited state of a superconducting transmon and the engineered bath resonator. Our scheme achieves a state preparation fidelity of 84% with a stabilization time constant of 339 ns, leading to a 54 ns error-time product in a solid-state quantum information platform.

Suggested Citation

  • T. Brown & E. Doucet & D. Ristè & G. Ribeill & K. Cicak & J. Aumentado & R. Simmonds & L. Govia & A. Kamal & L. Ranzani, 2022. "Trade off-free entanglement stabilization in a superconducting qutrit-qubit system," Nature Communications, Nature, vol. 13(1), pages 1-7, December.
  • Handle: RePEc:nat:natcom:v:13:y:2022:i:1:d:10.1038_s41467-022-31638-0
    DOI: 10.1038/s41467-022-31638-0
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    References listed on IDEAS

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    1. Ruichao Ma & Brendan Saxberg & Clai Owens & Nelson Leung & Yao Lu & Jonathan Simon & David I. Schuster, 2019. "Author Correction: A dissipatively stabilized Mott insulator of photons," Nature, Nature, vol. 570(7761), pages 52-52, June.
    2. Ruichao Ma & Brendan Saxberg & Clai Owens & Nelson Leung & Yao Lu & Jonathan Simon & David I. Schuster, 2019. "A dissipatively stabilized Mott insulator of photons," Nature, Nature, vol. 566(7742), pages 51-57, February.
    3. Frank Arute & Kunal Arya & Ryan Babbush & Dave Bacon & Joseph C. Bardin & Rami Barends & Rupak Biswas & Sergio Boixo & Fernando G. S. L. Brandao & David A. Buell & Brian Burkett & Yu Chen & Zijun Chen, 2019. "Quantum supremacy using a programmable superconducting processor," Nature, Nature, vol. 574(7779), pages 505-510, October.
    4. S. Shankar & M. Hatridge & Z. Leghtas & K. M. Sliwa & A. Narla & U. Vool & S. M. Girvin & L. Frunzio & M. Mirrahimi & M. H. Devoret, 2013. "Autonomously stabilized entanglement between two superconducting quantum bits," Nature, Nature, vol. 504(7480), pages 419-422, December.
    5. Clément Sayrin & Igor Dotsenko & Xingxing Zhou & Bruno Peaudecerf & Théo Rybarczyk & Sébastien Gleyzes & Pierre Rouchon & Mazyar Mirrahimi & Hadis Amini & Michel Brune & Jean-Michel Raimond & Serge Ha, 2011. "Real-time quantum feedback prepares and stabilizes photon number states," Nature, Nature, vol. 477(7362), pages 73-77, September.
    6. V. Negnevitsky & M. Marinelli & K. K. Mehta & H.-Y. Lo & C. Flühmann & J. P. Home, 2018. "Repeated multi-qubit readout and feedback with a mixed-species trapped-ion register," Nature, Nature, vol. 563(7732), pages 527-531, November.
    7. Y. Lin & J. P. Gaebler & F. Reiter & T. R. Tan & R. Bowler & A. S. Sørensen & D. Leibfried & D. J. Wineland, 2013. "Dissipative production of a maximally entangled steady state of two quantum bits," Nature, Nature, vol. 504(7480), pages 415-418, December.
    8. Christoph Berke & Evangelos Varvelis & Simon Trebst & Alexander Altland & David P. DiVincenzo, 2022. "Transmon platform for quantum computing challenged by chaotic fluctuations," Nature Communications, Nature, vol. 13(1), pages 1-10, December.
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