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Charge-parity qubits based on concatenation of π-periodic Josephson elements: Part 2

ORAL

Abstract

For charge-parity qubits formed from concatenated π-periodic plaquette elements, the dispersion of the qubit energy bands with flux depends on the path through the multi-dimensional flux bias space. With only one plaquette biased near π-periodicity, the dispersion is linear near frustration, while biasing two concatenated plaquettes near π-periodicity results in a quadratic dispersion. Here, we describe our experimental characterization of devices with three concatenated π-periodic elements through spectroscopy and time-domain measurements at various flux and charge bias regimes.

Presenters

  • Kenneth R Dodge

    Syracuse University

Authors

  • Kenneth R Dodge

    Syracuse University

  • Yebin Liu

    Syracuse University

  • Bradley G Cole

    Syracuse University

  • Abigail J Shearrow

    University of Wisconsin - Madison

  • Matthew Snyder

    University of Wisconsin- Madison, University of Wisconsin - Madison

  • Emma Brann

    University of Wisconsin- Madison, University of Wisconsin - Madison

  • Andrey Klots

    Google, Google LLC

  • Lara Faoro

    LPTHE Jussieu, Laboratoire de Physique Th\'{e}orique et Hautes \'{E}nergies, Sorbonne Universit\'{e}, Paris, France

  • Lev B Ioffe

    Google LLC

  • Robert McDermott

    University of Wisconsin - Madison

  • B.L.T Plourde

    Syracuse University