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Impedance-matched Josephson parametric amplifier using open stubs as shunt capacitance

ORAL

Abstract

Broadband Josephson parametric amplifiers (JPAs) are essential devices for frequency-multiplexed readout of integrated superconducting qubits towards large-scale quantum computers. Lumped capacitors such as parallel-plate capacitors are often used for such broadband JPAs to bring LC resonance with Josephson inductances to the GHz frequency region. Fabricating insulating layers of the parallel-plate capacitors makes fabrication process complex and causes additional dielectric losses.
In this presentation, we show that open stubs (open-circuited transmission lines connected at one end) can be used as shunt capacitances for JPA resonators. Such distributed elements are implemented by planar structures and thus have advantages over parallel-plate capacitors in terms of fabrication simplicity and dielectric loss. Using the open-stub structure, we experimentally demonstrate a broadband flux-driven JPA device based on impedance-matching technique, which operates at around 10 GHz with an instantaneous bandwidth of 300 MHz and saturation input power of -110 dBm.

Presenters

  • Yoshiro Urade

    RIKEN, Center for Emergent Matter Science (CEMS), RIKEN

Authors

  • Yoshiro Urade

    RIKEN, Center for Emergent Matter Science (CEMS), RIKEN

  • Kun Zuo

    Center for Emergent Matter Science, RIKEN, RIKEN, Center for Emergent Matter Science (CEMS), RIKEN

  • Kunihiro Inomata

    National Institute of Advanced Industrial Science and Technology

  • Zhirong Lin

    Shanghai Institute of Microsystem and Information Technology

  • Tsuyoshi Yamamoto

    NEC Corporation

  • Yasunobu Nakamura

    Research Center for Advanced Science and Technology, The University of Tokyo, Univ of Tokyo, RIKEN, RCAST, The University of Tokyo, The University of Tokyo