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20212026
most citedSpiderCat: Optimal Fault-Tolerant Cat State Preparation

1 citations · 1 across the 4 of their papers we have counts for

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quant-ph2026

Resource-adaptive distributed fault tolerance with very noisy Bell pairs

Moritz Schmidt, Martin Moureau, Benjamin Rodatz +3

Distributed architectures have been proposed as a pathway to large-scale quantum computers. Combined with the need for fault-tolerance, such architectures require distributed quant…

quant-ph2026

Preserving MWPM-Decodability in Fault-Equivalent Rewrites

Maximilian Schweikart, Linnea Grans-Samuelsson, Aleks Kissinger +1

Decoding a quantum error correction code is generally NP-hard, but corrections must be applied at a high frequency to suppress noise successfully. Matchable codes, like the surface…

quant-ph20261 cited

SpiderCat: Optimal Fault-Tolerant Cat State Preparation

Andrey Boris Khesin, Sarah Meng Li, Boldizsár Poór +3

The ability to fault-tolerantly prepare CAT states, also known as multi-qubit GHZ states, is an important primitive for quantum error correction. It is required for Shor-style synd…

quant-ph2025

Ultra Low Overhead Syndrome Extraction for the Steane code

Boldizsár Poór, Benjamin Rodatz, Aleks Kissinger

We establish a new performance benchmark for the fault-tolerant syndrome extraction of the [[7, 1, 3]] Steane code with a dynamic protocol. Our method is built on two highly optimi…

quant-ph2025

Completeness for Fault Equivalence of Clifford ZX Diagrams

Maximilian Rüsch, Aleks Kissinger, Benjamin Rodatz

Two circuits are considered to be equivalent under noise if the effect of faults on one circuit is no worse than the effect of faults on the other circuit. We call this relationshi…

quant-ph2025

Fault Tolerance by Construction

Benjamin Rodatz, Boldizsár Poór, Aleks Kissinger

A key challenge in fault-tolerant quantum computing is synthesising and optimising circuits in a noisy environment, as traditional techniques often fail to account for the effect o…