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20182021
most citedThe role of entropy in topological quantum error correction

19 citations · 19 across the 1 of their papers we have counts for

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quant-ph2021

Practical quantum error correction with the XZZX code and Kerr-cat qubits

Andrew S. Darmawan, Benjamin J. Brown, Arne L. Grimsmo +2

The development of robust architectures capable of large-scale fault-tolerant quantum computation should consider both their quantum error-correcting codes, and the underlying phys…

quant-ph2020

The XZZX Surface Code

J. Pablo Bonilla Ataides, David K. Tuckett, Stephen D. Bartlett +2

Performing large calculations with a quantum computer will likely require a fault-tolerant architecture based on quantum error-correcting codes. The challenge is to design practica…

quant-ph2019

Fault-tolerant thresholds for the surface code in excess of 5% under biased noise

David K. Tuckett, Stephen D. Bartlett, Steven T. Flammia +1

Noise in quantum computing is countered with quantum error correction. Achieving optimal performance will require tailoring codes and decoding algorithms to account for features of…

quant-ph2019

A fault-tolerant non-Clifford gate for the surface code in two dimensions

Benjamin J. Brown

Fault-tolerant logic gates will consume a large proportion of the resources of a two-dimensional quantum computing architecture. Here we show how to perform a fault-tolerant non-Cl…

quant-ph2019

Parallelized quantum error correction with fracton topological codes

Benjamin J. Brown, Dominic J. Williamson

Fracton topological phases have a large number of materialized symmetries that enforce a rigid structure on their excitations. Remarkably, we find that the symmetries of a quantum…

quant-ph201819 cited

The role of entropy in topological quantum error correction

Michael E. Beverland, Benjamin J. Brown, Michael J. Kastoryano +1

The performance of a quantum error-correction process is determined by the likelihood that a random configuration of errors introduced to the system will lead to the corruption of…