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Relaxing the Single Point of Failure in Quantum Key Distribution Networks: An Overview of Multi-path Approaches

    • Universität der Bundeswehr München

    Research output: Chapter in Book or Conference ProceedingsConference Proceedings with Oral Presentationpeer-review

    Abstract

    Quantum Key Distribution (QKD) networks are receiving growing attention by researchers and funding agencies, with the largest projects spanning hundreds of kilometers and large, multi-national initiatives well under way. The growing scale of QKD networks poses some extra challenges, in particular due to the current impossibility of establishing end-to-end security between nodes: for large distances, reliance on intermediate trusted nodes is required, an aspect which increases the attack surface of QKD networks. A possible mitigation strategy for this problem lies in leveraging the complexity of the network: by making use of multiple paths and applying techniques issued from cryptography and/or error-correcting theory, it is possible to mitigate some attacks and force an adversary to compromise more nodes in the network.

    This paper discusses relevant approaches to leverage multi-path aspects of QKD networks for increased security, analyzing the different security assumptions, guarantees, and performance of different techniques, and presenting their applicability to the different networks.
    Original languageEnglish
    Title of host publicationAvailability, Reliability and Security
    Subtitle of host publicationARES 2025 EU Projects Symposium Workshops, Ghent, Belgium, August 11–14, 2025, Proceedings, Part I
    EditorsFlorian Skopik, Vincent Naessens, Bjorn De Sutter
    PublisherSpringer
    Pages183–200
    Volume15998
    ISBN (Electronic)978-3-032-00642-4
    ISBN (Print)978-3-032-00641-7
    DOIs
    Publication statusPublished - 2025
    EventARES 2025 EU Projects Symposium Workshops - Ghent, Ghent, Belgium
    Duration: 11 Aug 202514 Aug 2025

    Publication series

    NameLecture Notes in Computer Science
    PublisherSpringer Cham
    Volume15998
    ISSN (Print)0302-9743
    ISSN (Electronic)1611-3349

    Workshop

    WorkshopARES 2025 EU Projects Symposium Workshops
    Country/TerritoryBelgium
    CityGhent
    Period11/08/2514/08/25

    Research Field

    • Cyber Security

    Keywords

    • Networks
    • Network Management
    • Key-Management Systems
    • Multi-Path Quantum Key Distribution
    • Quantum Key Distribution

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