Abstract
AbstractDevelopers of the many promising quantum computing applications that currently exist are urging companies in many different sectors seriously consider integrating this new technology into their business. For these applications to function, not only are quantum computers required, but quantum software also. Accordingly, quantum software engineering has become an important research field, in that it attempts to apply or adapt existing methods and techniques (or propose new ones) for the analysis, design, coding, and testing of quantum software, as well as playing a key role in ensuring quality in large-scale productions. The design of quantum software nevertheless poses two main challenges: the modelling of software quantum elements must be done in high-level modelling languages; and the need to further develop so-called “hybrid information systems”, which combine quantum and classical software. To address these challenges, we first propose a quantum UML profile for analysing and designing hybrid information systems; we then demonstrate its applicability through various structural and behavioural diagrams such as use case, class, sequence, activity, and deployment. In comparison to certain other quantum domain-specific languages, this UML profile ensures compliance with a well-known international standard that is supported by many tools and is followed by an extensive community.
Funder
Ministerio de Ciencia e Innovación
Centre for Industrial Technological Development
Publisher
Springer Science and Business Media LLC
Subject
Computational Mathematics,Computational Theory and Mathematics,Computer Science Applications,Numerical Analysis,Theoretical Computer Science,Software
Reference59 articles.
1. Egger DJ, Gambella C, Marecek J, McFaddin S, Mevissen M, Raymond R, Simonetto A, Woerner S, Yndurain E (2020) Quantum computing for finance: state-of-the-art and future prospects. IEEE Trans Quantum Eng 1:1–24
2. The Economist (2020) Wall street’s latest shiny new thing: quantum computing. https://www.economist.com/finance-and-economics/2020/12/19/wall-streets-latest-shiny-new-thing-quantum-computing
3. Yudong C, Jonathan R, Olson Jonathan P, Matthias D, Johnson Peter D, Mária K, Kivlichan Ian D, Tim M, Borja P, Sawaya Nicolas PD, Sukin S, Libor V, Alán A-G (2019) Quantum chemistry in the age of quantum computing. Chem Rev 119(19):10856–10915
4. Cao Y, Romero J, Aspuru-Guzik A (2018) Potential of quantum computing for drug discovery. IBM J Res Dev 62(6):6:1-6:20
5. Njorbuenwu M, Swar B, Zavarsky P (2019) A survey on the impacts of quantum computers on information security. In: 2019 2nd International conference on data intelligence and security (ICDIS), pp 212–218
Cited by
11 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
1. The quantum frontier of software engineering: A systematic mapping study;Information and Software Technology;2024-11
2. Quantum Software Engineering: Practical Challenges;International Journal of Software Engineering and Knowledge Engineering;2024-08-30
3. A reference architecture for quantum computing as a service;Journal of King Saud University - Computer and Information Sciences;2024-07
4. Model-Based Framework for Continuous Adaptation and Evolution of Quantum-Classical Hybrid Systems;Companion Proceedings of the 8th International Conference on the Art, Science, and Engineering of Programming;2024-03-11
5. Unraveling quantum computing system architectures: An extensive survey of cutting-edge paradigms;Information and Software Technology;2024-03