September 2026

Conference Paper

SoS-SDQN: System of Systems Software-defined Quantum Networking

By:
Alnajjar, Anees M; Zhang, Yanbao ; Chaves Claudino, Daniel ; Kiran, Mariam
Page Number:
62-67
Book Title:
QuNet '26: Proceedings of the 3rd ACM SIGCOMM Workshop on Quantum Networks and Distributed Quantum Computing
Publication Date:
September 2026
Publisher Location:
Association for Computing Machinery, New York, New York, United States of America
Conference Name:
ACM SIGCOMM Workshop on Quantum Networks and Distributed Quantum Computing
Conference Location:
Berkeley, California, United States of America
Conference Sponsor:
ACM
View DOI Listing:
https://doi.org/10.1145/3833409.3833448

Abstract

Quantum networks are needed for quantum domain applications that may run across different network deployments - point-to-point, multi-node networks, and possibly across inter-domain quantum networks, like the quantum internet. Unlike classical computing networks, quantum networks involve heterogeneous systems nodes that currently require local and manual control. This needs a unified control approach to help them integrate, work seamlessly, and have global knowledge. Software-defined Networking (SDN) has been successfully leveraged in classical networking for seamless and software-driven control of network infrastructure and packet switching, but not in management of quantum network applications across heterogeneous systems. In this paper, we review the current state of the art and present early developments of a System-of-Systems Software-defined Quantum Networking architecture (SoS-SDQN), a generic architecture that supports software-driven quantum network experiments across heterogeneous quantum systems. The architecture modifies the generic SDN to address the domain requirements of quantum networks and proposes a multilevel SDQN to provide a global view of network status, running applications, and control of incorporated heterogeneous quantum systems. We also design and implement a SoS SouthBound Quantum Interface (SoS-SBQI), a quantum infrastructure protocol that abstracts automation of applications across the network.