Quantum Mini-Apps: A Framework for Developing and Benchmarking Quantum-HPC Applications
May 12, 2024 Β· Declared Dead Β· π Proceedings of the 2024 Workshop on High Performance and Quantum Computing Integration
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Authors
Nishant Saurabh, Pradeep Mantha, Florian J. Kiwit, Shantenu Jha, Andre Luckow
arXiv ID
2405.07333
Category
quant-ph: Quantum Computing
Cross-listed
cs.DC
Citations
8
Venue
Proceedings of the 2024 Workshop on High Performance and Quantum Computing Integration
Last Checked
5 months ago
Abstract
With the increasing maturity and scale of quantum hardware and its integration into HPC systems, there is a need to develop robust techniques for developing, characterizing, and benchmarking quantum-HPC applications and middleware systems. This requires a better understanding of interaction, coupling, and common execution patterns between quantum and classical workload tasks and components. This paper identifies six quantum-HPC execution motifs - recurring execution patterns characterized by distinct coupling and interaction modes. These motifs provide the basis for a suite of quantum mini-apps - simplified application prototypes that encapsulate essential characteristics of production systems. To support these developments, we introduce a mini-app framework that offers the necessary abstractions for creating and executing mini-apps across heterogeneous quantum-HPC infrastructure, making it a valuable tool for performance characterizations and middleware development.
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