7–11 Dec 2026
The University of Sydney
Australia/Sydney timezone
AIP Congress 2026

Scalable quantum error correction tailored for a heavy-hex qubit array

Not scheduled
20m
Belinda Hutchinson Building (The University of Sydney )

Belinda Hutchinson Building

The University of Sydney

Abercrombie St & Codrington St NSW 2008
Contributed Oral AIP | Quantum Science and Technology (QST)

Description

To produce an operable quantum computer that is made with imperfect hardware, we must design and test scalable quantum error correcting codes that are suited for the devices we can build and, in unison, develop decoding strategies that accommodate device-specific noise characteristics. Here, we introduce the dynamic compass code, a subsystem code with a novel syndrome extraction cycle, that has a competitive threshold while making efficient use of qubits arranged on a heavy-hex lattice. We use a superconducting qubit array to implement a distance-5 instance of this code, and demonstrate how detailed noise characterisation can boost decoder performance to yield significant improvements in logical error rates. We perform averaged circuit eigenvalue sampling (ACES) to acquire detailed context-dependent error information on all elements of the syndrome extraction process. Furthermore, we leverage soft information produced from measurement devices to augment the decoder with measurement error information and detect leakage errors for exclusion through post-selection. Our noise-informed approach yields up to 38.3% improvement in the logical error rate of a distance-5 implementation of the dynamic compass code in experiment.

I am the presenting author Yes

Authors

Dr Benjamin Brown (IBM) Campbell McLauchlan (University of Sydney) Dr Evan Hockings (University of Sydney) Dr Georgia Nixon (University of Sydney) Ms Jun Zen (Okinawa Institute of Science and Technology) Dr Robin Harper (University of Sydney) Dr Seok-Hyung Lee (Sungkyunkwan University) Dr Thomas Scruby (Okinawa Institute of Science and Technology) Mr Xanda Kolesnikow (University of Sydney) Prof. Stephen Bartlett (University of Sydney)

Presentation materials

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