Rethinking Services in the Quantum Age: The SOQ Paradigm
October 04, 2025 Β· Declared Dead Β· π arXiv.org
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Authors
Jose Garcia-Alonso, Enrique Moguel, Jaime Alvarado-Valiente, Javier Romero-Alvarez, Γlvaro M. Aparicio-Morales, Juan M. Murillo, Francisco Javier Cavero, AdriΓ‘n Romero-Flores, Alfonso E. Marquez-Chamorro, JosΓ© Antonio Parejo, Antonio Ruiz-CortΓ©s, Giuseppe Bisicchia, Alessandro Bocci, Antonio Brogi
arXiv ID
2510.03890
Category
cs.SE: Software Engineering
Citations
0
Venue
arXiv.org
Last Checked
5 months ago
Abstract
Quantum computing is rapidly progressing from theoretical promise to practical implementation, offering significant computational advantages for tasks in optimization, simulation, cryptography, and machine learning. However, its integration into real-world software systems remains constrained by hardware fragility, platform heterogeneity, and the absence of robust software engineering practices. This paper introduces Service-Oriented Quantum (SOQ), a novel paradigm that reimagines quantum software systems through the lens of classical service-oriented computing. Unlike prior approaches such as Quantum Service-Oriented Computing (QSOC), which treat quantum capabilities as auxiliary components within classical systems, SOQ positions quantum services as autonomous, composable, and interoperable entities. We define the foundational principles of SOQ, propose a layered technology stack to support its realization, and identify the key research and engineering challenges that must be addressed, including interoperability, hybridity, pricing models, service abstractions, and workforce development. This approach is of vital importance for the advancement of quantum technology because it enables the scalable, modular, and interoperable integration of quantum computing into real-world software systems independently and without relying on a dedicated classical environment to manage quantum processing.
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