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Practical hybrid PQC-QKD protocols with enhanced security and performance
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Quantum resistance is vital for emerging cryptographic systems as quantum technologies continue to advance towards large-scale, fault-tolerant quantum computers. Resistance may be offered by quantum key distribution (QKD), which provides information-theoretic security using quantum states of photons, but may be limited by transmission loss at long distances. An alternative approach uses classical means and is conjectured to be resistant to quantum attacks, so-called post-quantum cryptography (PQC), but it is yet to be rigorously proven, and its current implementations are computationally expensive. To overcome the security and performance challenges present in each, here we develop hybrid protocols by which QKD and PQC inter-operate within a joint quantum-classical network. In particular, we consider different hybrid designs that may offer enhanced speed and/or security over the individual performance of either approach. Furthermore, we present a method for analyzing the security of hybrid protocols in key distribution networks. Our hybrid approach paves the way for joint quantum-classical communication networks, which leverage the advantages of both QKD and PQC and can be tailored to the requirements of various practical networks.
Forward citations
Cited by 4 Pith papers
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A Critical Analysis of Deployed Use Cases for Quantum Key Distribution and Comparison with Post-Quantum Cryptography
A security analysis of 11 deployed QKD use cases finds that QKD provides little or no advantage over PQC or pre-shared keys in most scenarios, with only OTP-based short-distance links offering a clear benefit.
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Hybrid Quantum Security for IPsec
Parallel hybrid QKD-PQC key exchange for IKEv2 avoids extra round trips and outperforms the sequential RFC 9370 approach under high network latency.
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Onion Routing Key Distribution for QKDN
The paper applies onion-routing encapsulation plus post-quantum KEM and signatures to QKD-network key relay to keep shared secrets hidden from intermediate nodes, without providing a security proof or implementation.
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Real-Time VPN Traffic over ETSI GS QKD 014 Key Delivery with a LuxQuanta NOVA QKD Platform
A user-space VPN on Jetson Xavier NX peers ran eight hours of bidirectional real-time audio/video using keys delivered by LuxQuanta NOVA via ETSI GS QKD 014 with in-band key_ID transport.
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