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quant-ph2026

Error-detected surgery on Iceberg codes

Andrea Di Fini, Samuel Crew, Laura Pecorari +1

We construct explicit error-detecting surgery gadgets---small systems of auxiliary qubits and checks---for the high-rate Iceberg codes , to perform fault-detected me…

quant-ph2026

Fault-tolerant quantum computation with static atomic buses

Matteo Bergonzoni, Laura Pecorari, Sam Norrell +3

Efficient quantum error correction and fault-tolerant quantum computing require scalable, high-fidelity long-range connectivity. In neutral-atom quantum computers, this is commonly…

quant-ph2026

Pontryagin Maximum Principle for Rydberg-blockaded state-to-state transfers: A semi-analytic approach

Federico Alberto Astolfi, Sven Jandura, Guido Pupillo

We study time-optimal state-to-state control for two- and multi-qubit operations motivated by neutral-atom quantum processors within the Rydberg blockade regime. Block-diagonalizat…

quant-ph2026

Correlated Atom Loss as a Resource for Quantum Error Correction

Hugo Perrin, Gatien Roger, Guido Pupillo

Atom loss is a dominant error source in neutral-atom quantum processors, yet its correlated structure remains largely unexploited by existing quantum error correction decoders. We…

quant-ph2026

Loss-biased fault-tolerant quantum error correction

Laura Pecorari, Gavin K. Brennen, Stanimir S. Kondov +1

We investigate the limits of quantum error correction (QEC) in neutral-atom processors approaching high-fidelity gates and fast cycle times. We show that shorter QEC cycles amplify…

quant-ph2026

Fast Quantum Gates for Neutral Atoms Separated by a Few Tens of Micrometers

Matteo Bergonzoni, Rosario Roberto Riso, Guido Pupillo

We present a theoretical scheme for a family of fast and high-fidelity two-qubit iSWAP gates between neutral atoms separated by more than 20 um, enabled by resonant dipole-dipole s…