Multi-Path Interferometric Josephson Directional Amplifier for Qubit Readout

ORAL

Abstract

We realize and characterize a quantum-limited, directional Josephson amplifier suitable for qubit readout. The device consists of two nondegenerate, three-wave-mixing amplifiers that are coupled together in an interferometric scheme, embedded in a printed circuit board. Nonreciprocity is generated by applying a phase gradient between the same-frequency pumps feeding the device, which plays the role of the magnetic field in a Faraday medium. Directional amplification and reflection-gain elimination are induced via wave interference between multiple paths in the system. We measure and discuss the main figures of merit of the device and show that the experimental results are in good agreement with theory. An improved version of this directional amplifier is expected to eliminate the need for bulky, off-chip isolation stages that generally separate quantum systems and preamplifiers in high-fidelity, quantum-nondemolition measurement setups.

Presenters

  • Baleegh Abdo

    • IBM T J Watson Res Ctr
    • IBM

Authors

  • Baleegh Abdo

    • IBM T J Watson Res Ctr
    • IBM
  • Nicholas Bronn

    • IBM T J Watson Res Ctr
  • Oblesh Jinka

    • IBM TJ Watson Research Center
    • IBM T J Watson Res Ctr
  • Salvatore Olivadese

    • IBM TJ Watson
    • IBM TJ Watson Research Center
    • IBM
    • IBM T J Watson Res Ctr
  • Markus Brink

    • IBM T. J. Watson Research Center
    • IBM TJ Watson
    • IBM T.J. Watson Research Center
    • IBM T J Watson Res Ctr
  • Jerry Chow

    • IBM T.J. Watson Research Center
    • IBM T. J. Watson Research Center
    • IBM TJ Watson
    • IBM TJ Watson Research Center
    • IBM
    • IBM T J Watson Res Ctr
    • IBM T J Watson Research Center