Linking QKD Testbeds across Europe

Quantum-key-distribution (QKD) networks are gaining importance and it has become necessary to analyze the most appropriate methods for their long-distance interconnection. In this paper, four different methods of interconnecting remote QKD networks are proposed. The methods are used to link three di...

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Bibliographic Details
Main Authors: Max Brauer, Rafael J. Vicente, Jaime S. Buruaga, Rubén B. Méndez, Ralf-Peter Braun, Marc Geitz, Piotr Rydlichkowski, Hans H. Brunner, Fred Fung, Momtchil Peev, Antonio Pastor, Diego R. Lopez, Vicente Martin, Juan P. Brito
Format: Article
Language:English
Published: MDPI AG 2024-01-01
Series:Entropy
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Online Access:https://www.mdpi.com/1099-4300/26/2/123
Description
Summary:Quantum-key-distribution (QKD) networks are gaining importance and it has become necessary to analyze the most appropriate methods for their long-distance interconnection. In this paper, four different methods of interconnecting remote QKD networks are proposed. The methods are used to link three different QKD testbeds in Europe, located in Berlin, Madrid, and Poznan. Although long-distance QKD links are only emulated, the methods used can serve as a blueprint for the secure interconnection of distant QKD networks in the future. Specifically, the presented approaches combine, in a transparent way, different fiber and satellite physical media, as well as common standards of key delivery interfaces. The testbed interconnections are designed to increase the security by utilizing multipath techniques and multiple hybridizations of QKD and post-quantum cryptography (PQC) algorithms.
ISSN:1099-4300