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Comparing Performance of Variational Quantum Algorithm Simulations on HPC Systems

  • Marco De Pascale
  • , Tobias Valentin Bauer
  • , Yaknan John Gambo
  • , Mario Hernandez Vera
  • , Stefan Huber
  • , Burak Mete
  • , Amit Jamadagni
  • , Amine Bentellis
  • , Marita Oliv
  • , Luigi Iapichino
  • , Jeanette Miriam Lorenz

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

Variational quantum algorithms are of special importance in the research on quantum computing applications because of their applicability to current Noisy Intermediate-Scale Quantum (NISQ) devices. The main building blocks of these algorithms define a relatively large parameter space, making the comparison of results and performance between different approaches and software simulators cumbersome and prone to errors. In this paper, we employ a generic description of the problem, in terms of both Hamiltonian and ansatz, to consistently port a problem definition across different simulators. A use case relevant to current quantum hardware has been run on a set of HPC systems and software simulators to study the dependence of performance on the runtime environment, the scalability of the simulation codes, and the agreement between the physical results, respectively. The results show that our toolchain can successfully translate a problem definition between different simulators. On the other hand, variational algorithms are limited in their scaling by the long runtimes with respect to their memory footprint, so they expose limited parallelism to computation. This shortcoming is partially mitigated by using techniques like job arrays. The potential of the parser tool within the toolchain for exploring HPC performance and comparisons of results of variational algorithm simulations is highlighted.

Original languageEnglish
Title of host publicationKeynotes, Workshops, Posters, Panels, and Tutorials Program
EditorsCandace Culhane, Greg Byrd, Hausi Muller, Andrea Delgado, Stephan Eidenbenz
PublisherInstitute of Electrical and Electronics Engineers Inc.
Pages21-27
Number of pages7
ISBN (Electronic)9798331557362
DOIs
StatePublished - 2025
Event6th IEEE International Conference on Quantum Computing and Engineering, QCE 2025 - Albuquerque, United States
Duration: Aug 31 2025Sep 5 2025

Publication series

NameProceedings - IEEE Quantum Week 2025, QCE 2025
Volume2

Conference

Conference6th IEEE International Conference on Quantum Computing and Engineering, QCE 2025
Country/TerritoryUnited States
CityAlbuquerque
Period08/31/2509/5/25

Funding

This work is partially funded by the Bavarian State Ministry of Science and the Arts as part of the Munich Quantum Valley and by the Bavarian Ministry of Economic Affairs, Regional Development and Energy with funds from the High-Tech Agenda Bayern.

Keywords

  • Applications: chemistry
  • Benchmarking
  • HPC simulations
  • Performance evaluation
  • Variational Quantum Algorithms
  • optimization

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