Quantum Software Engineering: Roadmap and Challenges Ahead

Fuente: arXiv
Enregistré dans:
Détails bibliographiques
Auteurs principaux: Murillo, Juan M., Garcia-Alonso, Jose, Moguel, Enrique, Barzen, Johanna, Leymann, Frank, Ali, Shaukat, Yue, Tao, Arcaini, Paolo, Castillo, Ricardo Pérez, de Guzmán, Ignacio García Rodríguez, Piattini, Mario, Ruiz-Cortés, Antonio, Brogi, Antonio, Zhao, Jianjun, Miranskyy, Andriy, Wimmer, Manuel
Format: Preprint
Publié: 2024
Sujets:
Accès en ligne:
Tags: Ajouter un tag
Pas de tags, Soyez le premier à ajouter un tag!
_version_ 1866929692817227776
author Murillo, Juan M.
Garcia-Alonso, Jose
Moguel, Enrique
Barzen, Johanna
Leymann, Frank
Ali, Shaukat
Yue, Tao
Arcaini, Paolo
Castillo, Ricardo Pérez
de Guzmán, Ignacio García Rodríguez
Piattini, Mario
Ruiz-Cortés, Antonio
Brogi, Antonio
Zhao, Jianjun
Miranskyy, Andriy
Wimmer, Manuel
author_facet Murillo, Juan M.
Garcia-Alonso, Jose
Moguel, Enrique
Barzen, Johanna
Leymann, Frank
Ali, Shaukat
Yue, Tao
Arcaini, Paolo
Castillo, Ricardo Pérez
de Guzmán, Ignacio García Rodríguez
Piattini, Mario
Ruiz-Cortés, Antonio
Brogi, Antonio
Zhao, Jianjun
Miranskyy, Andriy
Wimmer, Manuel
contents As quantum computers advance, the complexity of the software they can execute increases as well. To ensure this software is efficient, maintainable, reusable, and cost-effective -key qualities of any industry-grade software-mature software engineering practices must be applied throughout its design, development, and operation. However, the significant differences between classical and quantum software make it challenging to directly apply classical software engineering methods to quantum systems. This challenge has led to the emergence of Quantum Software Engineering as a distinct field within the broader software engineering landscape. In this work, a group of active researchers analyse in depth the current state of quantum software engineering research. From this analysis, the key areas of quantum software engineering are identified and explored in order to determine the most relevant open challenges that should be addressed in the next years. These challenges help identify necessary breakthroughs and future research directions for advancing Quantum Software Engineering.
format Preprint
id arxiv_https___arxiv_org_abs_2404_06825
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Quantum Software Engineering: Roadmap and Challenges Ahead
Murillo, Juan M.
Garcia-Alonso, Jose
Moguel, Enrique
Barzen, Johanna
Leymann, Frank
Ali, Shaukat
Yue, Tao
Arcaini, Paolo
Castillo, Ricardo Pérez
de Guzmán, Ignacio García Rodríguez
Piattini, Mario
Ruiz-Cortés, Antonio
Brogi, Antonio
Zhao, Jianjun
Miranskyy, Andriy
Wimmer, Manuel
Software Engineering
As quantum computers advance, the complexity of the software they can execute increases as well. To ensure this software is efficient, maintainable, reusable, and cost-effective -key qualities of any industry-grade software-mature software engineering practices must be applied throughout its design, development, and operation. However, the significant differences between classical and quantum software make it challenging to directly apply classical software engineering methods to quantum systems. This challenge has led to the emergence of Quantum Software Engineering as a distinct field within the broader software engineering landscape. In this work, a group of active researchers analyse in depth the current state of quantum software engineering research. From this analysis, the key areas of quantum software engineering are identified and explored in order to determine the most relevant open challenges that should be addressed in the next years. These challenges help identify necessary breakthroughs and future research directions for advancing Quantum Software Engineering.
title Quantum Software Engineering: Roadmap and Challenges Ahead
topic Software Engineering
url https://arxiv.org/abs/2404.06825