most citedAn almost-linear time decoding algorithm for quantum LDPC codes under circuit-level noise

2 citations · 2 across the 2 of their papers we have counts for

collaborators

12 papers

quant-ph2026

Quantum Codes with Arbitrary Z-Rotation logical Gates and Applications to Fault-Tolerant Code Switching

Reza Dastbasteh, Ruben M. Otxoa, Pedro M. Crespo +1

A technique for realizing a universal set of fault-tolerant quantum operations is the code switching method, which leverages two quantum codes with complementary sets of transversa…

quant-ph20262 cited

An almost-linear time decoding algorithm for quantum LDPC codes under circuit-level noise

Antonio deMarti iOlius, Imanol Etxezarreta Martinez, Joschka Roffe +1

Fault-tolerant quantum computers must be designed in conjunction with classical co-processors that decode quantum error correction measurement information in real-time. In this wor…

quant-ph2026

Forecasting Quantum Observables: A Compressed Sensing Approach with Performance Guarantees

Víctor Valls, Albert Akhriev, Olatz Sanz Larrarte +5

Data-driven extrapolation methods aim to extend the dynamics of quantum observables from measurements, but they often lack guarantees on prediction accuracy. We introduce a framewo…

quant-ph2026

Surface-Code Thresholds and Qubit Footprints in Shuttling-Based Spin-Qubit Railways

Arun John Moncy, Reza Dastbasteh, Josu Etxezarreta Martinez +5

We present a fault-tolerant mapping of rotated surface codes onto a silicon spin-qubit railway architecture, utilizing electron shuttling to resolve the wiring fan-out…

quant-ph2026

Noise mitigation of quantum observables via learning from Hamiltonian symmetry decays

Javier Oliva del Moral, Olatz Sanz Larrarte, Joana Fraxanet +2

We present a new quantum error mitigation technique (QEM), called GUiding Extrapolations from Symmetry decayS (GUESS), which exploits Hamiltonian symmetries to improve accuracy of…

quant-ph2026

Impact of leakage on the dynamics of a ST qubit implemented in a Double Quantum Dot device

Javier Oliva del Moral, Olatz Sanz Larrarte, Reza Dastbasteh +2

Spin qubits in quantum dots are a promising technology for quantum computing due to their fast response time and long coherence times. An electromagnetic pulse is applied to the sy…