15–18 Jun 2026
University of Wisconsin, Madison
America/Chicago timezone

Measuring and modeling the impact of radiation on superconducting qubits protected through gap engineering

17 Jun 2026, 14:30
30m
University of Wisconsin, Madison

University of Wisconsin, Madison

Speaker

Doug Pinckney (MIT)

Description

Impacts from high-energy particles have been demonstrated to cause correlated errors in superconducting qubits by increasing the quasiparticle density in the Josephson junction (JJ) leads. These correlated errors are particularly harmful as they cannot be remedied via conventional error correcting codes. It was recently demonstrated that these correlated errors can be reduced or eliminated by engineering the difference in superconducting gap across the JJ to be larger than the qubit frequency. In order to test the efficacy of this strategy we have exposed arrays of this type of “gap engineered” qubits to a variety of radioactive sources, scanning both particle type and energy deposited in the substrate. We also characterize the effect of another layer of gap engineering away from the JJ to help suppress QP-induced dephasing errors. We will describe both the measurements performed and a quasiparticle model consistent with these measurements, discussing the implications for the future of preventing correlated errors.

Authors

Doug Pinckney (MIT) Tom McJunkin (Johns Hopkins Applied Physics Laboratory) Alan Hunt (The Johns Hopkins University Applied Physics Laboratory) Patrick Harrington (Massachusetts Institute of Technology) Hannah Binney (Massachusetts Institute of Technology) Max Hays (Massachusetts Institute of Technology) Yenuel Jones-Alberty (Johns Hopkins Applied Physics Laboratory) Kate Azar (Massachusetts Institute of Technology) Felipe Contipelli (MIT Lincoln Laboratory) Renee DePencier Pinero (MIT Lincoln Laboratory) Jeffrey Gertler (MIT Lincoln Laboratory) Michael Gingras (MIT Lincoln Laboratory) Aranya Goswami (Massachusetts Institute of Technology) Cyrus Hirjibehedin (MIT Lincoln Laboratory) Mingyu Li (Massachusetts Institute of Technology) Mathis Moes (Massachusetts Institute of Technology) Bethany Niedzielski (MIT Lincoln Laboratory) Mallika Randeria (MIT Lincoln Laboratory) Hannah Stickler (MIT Lincoln Laboratory) Jiatong Yang (Massachusetts Institute of Technology) Wouter Van De Pontseele (Colorado School of Mines) Mollie Schwartz (MIT Lincoln Laboratory) Jeffrey Grover (Massachusetts Institute of Technology) Kevin Schultz (Johns Hopkins Applied Physics Laboratory) Kyle Serniak (MIT Lincoln Laboratory) Joseph Formaggio (Massachusetts Institute of Technology) William Oliver (Massachusetts Institute of Technology)

Presentation materials