2 citations · 4 across the 11 of their papers we have counts for
8 papers · 1 filter
Towards Continuous Profiling and Optimization of Quantum-Classical Pipelines
Ayush Bansal, Owen Cochell, Santiago Núñez-Corrales +4
Quantum applications increasingly execute as multi-stage quantum-classical pipelines, interleaving QPU computation with classical stages like circuit generation, transpilation, lay…
The Need for Quantitative Resilience Models and Metrics in Classical-Quantum Computing Systems
Santiago Núñez-Corrales
Increasingly deeper integration of HPC resources and QPUs unveils new challenges in computer architecture and engineering. As a consequence, dependability arises again as a concern…
\textit{In Silico} Benchmarking of Detectable Byzantine Agreement in Noisy Quantum Networks
Mayank Bhatia, Shaan Doshi, Daniel Winton +3
Quantum communication resources offer significant advantages for fault-tolerant distributed protocols, particularly in Byzantine Agreement (BA), where reliability against adversari…
Productive Quantum Programming Needs Better Abstract Machines
Santiago Núñez-Corrales, Olivia Di Matteo, John Dumbell +4
An effective, accessible abstraction hierarchy has made using and programming computers possible for people across all disciplines. Establishing such a hierarchy for quantum progra…
Is Productivity in Quantum Programming Equivalent to Expressiveness?
Francini Corrales-Garro, Danny Valerio-Ramírez, Santiago Núñez-Corrales
The expressiveness of quantum programming languages plays a crucial role in the efficient and comprehensible representation of quantum algorithms. Unlike classical programming lang…
Adaptive Genetic Algorithms for Pulse-Level Quantum Error Mitigation
William Aguilar-Calvo, Santiago Núñez-Corrales
Noise remains a fundamental challenge in quantum computing, significantly affecting pulse fidelity and overall circuit performance. This paper introduces an adaptive algorithm for…