Abstract
Secure communication in large-scale quantum key distribution (QKD) networks relies on the key management layer to establish a key between any two nodes in the network. For non-adjacent nodes key forwarding is applied and secure keys are one-time pad encrypted with key material obtained from individual QKD links on a hop-by-hop basis from the initiator to the receiver. Notably, in a distributed setting, this requires that the nodes along the path be fully trusted, since they are given plaintext access to the secret during re-encryption.In this work, we propose a security model for the key forwarding process that provides confidentiality of the key with respect to all nodes that are not on the selected path from initiator to receiver. The model also captures the authenticity of the forwarded key in a sense that the key at the receiver is the same as the one sent by the initiator. Furthermore, in case the authenticity check fails, the receiver can identify the link that violated the authenticity guarantees by accident or on purpose. Finally, we provide a protocol for secure authentic key forwarding based on unconditionally hiding commitment schemes and unforgeable signature schemes that achieves confidentiality of the transmitted keys in an information theoretic sense of security whereas authenticity requires computationally secure primitives.
| Originalsprache | Englisch |
|---|---|
| Titel | 2025 International Conference on Quantum Communications, Networking, and Computing -- QCNC 2025 |
| Seiten | 486-493 |
| Seitenumfang | 8 |
| ISBN (elektronisch) | 979-8-3315-3159-1 |
| DOIs | |
| Publikationsstatus | Veröffentlicht - 2025 |
| Veranstaltung | International Conference on Quantum Communications, Networking, and Computing (QCNC 2025) - Nara, Nara, Japan Dauer: 31 März 2025 → 2 Apr. 2025 https://www.ieee-qcnc.org/2025/ |
Konferenz
| Konferenz | International Conference on Quantum Communications, Networking, and Computing (QCNC 2025) |
|---|---|
| Land/Gebiet | Japan |
| Stadt | Nara |
| Zeitraum | 31/03/25 → 2/04/25 |
| Internetadresse |
Research Field
- Cyber Security
Fingerprint
Untersuchen Sie die Forschungsthemen von „Secure Key Forwarding for Large-Scale Quantum Key Distribution Networks“. Zusammen bilden sie einen einzigartigen Fingerprint.Auszeichnungen
-
QCNC 2025 Best Paper Award
Franzoi, N. (Empfänger/-in), Krenn, S. (Empfänger/-in), Lorünser, T. (Empfänger/-in) & Ramacher, S. (Empfänger/-in), 31 März 2025
Auszeichnung: Best paper award für Beitrag in einer Fachzeitschrift/ auf einer Konferenz