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DemoQuanDT: a carrier-grade QKD network
Author(s) -
P. Horoschenkoff,
J. Henrich,
R. Bohn,
I. Khan,
J. Rodiger,
M. Gunkel,
M. Bauch,
J. Benda,
P. Blacker,
E. Eichhammer,
U. Eismann,
G. Frenck,
H. Griesser,
W. Jontofsohn,
N. Kopshoff,
S. Rohrich,
F. Seidl,
N. Schark,
E. Sollner,
D. von Blanckenburg,
A. Heinemann,
M. Stiemerling,
M. Gartner
Publication year - 2025
Publication title -
journal of optical communications and networking
Language(s) - English
Resource type - Magazines
SCImago Journal Rank - 0.835
H-Index - 65
eISSN - 1943-0639
pISSN - 1943-0620
DOI - 10.1364/jocn.563470
Subject(s) - communication, networking and broadcast technologies , photonics and electrooptics
Quantum key distribution networks (QKDNs) 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 QKDNs. 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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