2 citations · 2 across the 6 of their papers we have counts for
7 papers
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…
Transforming the Hybrid Cloud for Emerging AI Workloads
Deming Chen, Alaa Youssef, Ruchi Pendse +42
This white paper, developed through close collaboration between IBM Research and UIUC researchers within the IIDAI Institute, envisions transforming hybrid cloud systems to meet th…