collaborators

10 papers

quant-ph2026

Error correction on an array of superconducting qubits with defective components

Julien M. Drouet, Xanda C. Kolesnikow, Campbell K. McLauchlan +6

The paper experimentally compares methods for handling defective qubits and couplers in a superconducting qubit array, showing that excluding underperforming components significant…

quant-ph2026

Dynamical codes for hardware with noisy readouts

Peter-Jan H. S. Derks, Alex Townsend-Teague, Jens Eisert +3

Dynamical stabilizer codes may offer a practical route to large-scale quantum computation. Such codes are defined by a schedule of error-detecting measurements, which allows for fl…

quant-ph2026

A matching decoder for bivariate bicycle codes

Kaavya Sahay, Dominic J. Williamson, Benjamin J. Brown

The discovery of new quantum error-correcting codes that encode several logical qubits into relatively few physical qubits motivates the development of efficient and accurate metho…

quant-ph2026

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

Seok-Hyung Lee, Xanda C. Kolesnikow, Jun Zen +7

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…

quant-ph2026

Low-valency scalable quantum error correction with a dynamic compass code

Jun Zen, Xanda C. Kolesnikow, Campbell K. McLauchlan +6

The ongoing development of hardware that is capable of reliably executing general quantum algorithms requires quantum error-correcting codes that are both practical for realisation…

quant-ph2026

Quantum computing with anyons is fault tolerant

Anasuya Lyons, Benjamin J. Brown

In seminal work (arxiv:quant-ph/9707021) Alexei Kitaev proposed topological quantum computing (arXiv:cond-mat/0010440, arxiv:quant-ph/9707021, arXiv:quant-ph/0001108, arXiv:0707.18…