DemoQuanDT: A Carrier-Grade QKD Network

March 27, 2025 Β· Declared Dead Β· πŸ› Journal of Optical Communications and Networking

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Authors P. Horoschenkoff, J. Henrich, R. BΓΆhn, I. Khan, J. RΓΆdiger, M. Gunkel, M. Bauch, J. Benda, P. BlΓ€cker, E. Eichhammer, U. Eismann, G. Frenck, H. Griesser, W. Jontofsohn, N. Kopshoff, S. RΓΆhrich, F. Seidl, N. Schark, E. Sollner, D. von Blanckenburg, A. Heinemann, M. Stiemerling, M. GΓ€rtner arXiv ID 2503.21186 Category quant-ph: Quantum Computing Cross-listed cs.NI Citations 2 Venue Journal of Optical Communications and Networking Last Checked 5 months ago
Abstract
Quantum Key Distribution Networks (QKDN) enable secure communication even in the age of powerful quantum computers. In the hands of a network operator, which can offer its service to many users, the economic viability of a QKDN increases significantly. The highly challenging operator-user relationship in a large-scale network setting demands additional requirements to ensure carrier-grade operation. Addressing this challenge, this work presents a carrier-grade QKDN architecture, which combines the functional QKDN architecture with the operational perspective of a network operator, ultimately enhancing the economic viability of QKDN. The focus is on the network and key management aspects of a QKDN while assuming state-of-the-art commercial QKD-Modules. The presented architecture was rolled out within an in-field demonstrator, connecting the cities of Berlin and Bonn over a link distance of 923 km across Germany. We could show, that the proposed network architecture is feasible, integrable, and scalable making it suitable for deployment in real-world networks. Overall, the presented carrier-grade QKDN architecture promises to serve as a blueprint for network operators providing QKD-based services to their customers.
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