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quant-ph2025

SQUID G.A.M.E.: Gamma, Atmospheric, and Mono-Energetic Neutron Effects on Quantum Devices

Gioele Casagranda, Elizabeth Auden, Carlo Cazzaniga +5

Quantum devices are a promising solution to many research applications, including medical imaging, precision magnetic field measurements, condensed matter physics, and overcoming t…

quant-ph2025

Radiation-Induced Fault Detection in Superconducting Quantum Devices

Marzio Vallero, Gioele Casagranda, Flavio Vella +1

The quest for universal superconducting quantum computing is hindered by noise and errors. It has been proven that Quantum Error Correction (QEC) codes will lay at the foundation o…

quant-ph2025

State of practice: evaluating GPU performance of state vector and tensor network methods

Marzio Vallero, Flavio Vella, Paolo Rech

The frontier of quantum computing (QC) simulation on classical hardware is quickly reaching the hard scalability limits for computational feasibility. Nonetheless, there is still a…

quant-ph2024

Dependable Classical-Quantum Computer Systems Engineering

Edoardo Giusto, Santiago Nuñez-Corrales, Phuong Cao +8

Quantum Computing (QC) offers the potential to enhance traditional High-Performance Computing (HPC) workloads by leveraging the unique properties of quantum computers, leading to t…

quant-ph2024

On the Efficacy of Surface Codes in Compensating for Radiation Events in Superconducting Devices

Marzio Vallero, Gioele Casagranda, Flavio Vella +1

Reliability is fundamental for developing large-scale quantum computers. Since the benefit of technological advancements to the qubit's stability is saturating, algorithmic solutio…