most citedCharacterizing physical and logical errors in a transversal CNOT via cycle error reconstruction

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

collaborators

8 papers

quant-ph2026

Genuine Multipartite Entanglement between Logical Qubits via Cross-Code Lattice Surgery

Alex Steiner, Tomasz Andrzejewski, Phila Rembold +8

Universal quantum computers are expected to generate arbitrary complex quantum states of logical qubits encoded in many physical qubits. This capability hinges on a fault-tolerantl…

quant-ph2026

Experimental measurement and a physical interpretation of quantum shadow enumerators

Daniel Miller, Kyano Levi, Lukas Postler +18

Throughout its history, the theory of quantum error correction has heavily benefited from translating classical concepts into the quantum setting. In particular, classical notions…

quant-ph2026

Learning symmetry-protected topological order from trapped-ion experiments

Nicolas Sadoune, Ivan Pogorelov, Claire L. Edmunds +6

Classical machine learning has proven remarkably useful in post-processing quantum data, yet typical learning algorithms often require prior training to be effective. In this work,…

quant-ph20261 cited

Characterizing physical and logical errors in a transversal CNOT via cycle error reconstruction

Nicholas Fazio, Robert Freund, Debankan Sannamoth +7

The development of prototype quantum information processors has progressed to a stage where small instances of logical qubit systems perform better than the best of their physical…

quant-ph2024

Solving an Industrially Relevant Quantum Chemistry Problem on Quantum Hardware

Ludwig Nützel, Alexander Gresch, Lukas Hehn +10

Quantum chemical calculations are among the most promising applications for quantum computing. Implementations of dedicated quantum algorithms on available quantum hardware were so…

quant-ph2024

Dynamical quantum maps for single-qubit gates under universal non-Markovian noise

J. M. Sánchez Velázquez, A. Steiner, R. Freund +4

Noise is both ubiquitous and generally deleterious in settings where precision is required. This is especially true in the quantum technology sector where system utility typically…