Combined Quantum and Post-Quantum Security Performance Under Finite Keys

Fuente: arXiv
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Hauptverfasser: Gupta, Aman, Adhikari, Ravi Singh, Rani, Anju, Ai, Xiaoyu, Malaney, Robert
Format: Preprint
Veröffentlicht: 2025
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author Gupta, Aman
Adhikari, Ravi Singh
Rani, Anju
Ai, Xiaoyu
Malaney, Robert
author_facet Gupta, Aman
Adhikari, Ravi Singh
Rani, Anju
Ai, Xiaoyu
Malaney, Robert
contents Recent advances in quantum-secure communication have highlighted the value of hybrid schemes that combine Quantum Key Distribution (QKD) with Post-Quantum Cryptography (PQC). Yet most existing hybrid designs omit realistic finite-key effects on QKD key rates and do not specify how to maintain security when both QKD and PQC primitives leak information through side-channels. These gaps limit the applicability of hybrid systems in practical, deployed networks. In this work, we advance a recently proposed hybrid QKD-PQC system by integrating tight finite-key security to the QKD primitive and improving the design for better scalability. This hybrid system employs an information-theoretically secure instruction sequence that determines the configurations of different primitives and thus ensures message confidentiality even when both the QKD and the PQC primitives are compromised. The novelty in our work lies in the implementation of the tightest finite-key security to date for the BBM92 protocol and the design improvements in the primitives of the hybrid system that ensure the processing time scales linearly with the size of secret instructions.
format Preprint
id arxiv_https___arxiv_org_abs_2512_04429
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Combined Quantum and Post-Quantum Security Performance Under Finite Keys
Gupta, Aman
Adhikari, Ravi Singh
Rani, Anju
Ai, Xiaoyu
Malaney, Robert
Quantum Physics
Cryptography and Security
Recent advances in quantum-secure communication have highlighted the value of hybrid schemes that combine Quantum Key Distribution (QKD) with Post-Quantum Cryptography (PQC). Yet most existing hybrid designs omit realistic finite-key effects on QKD key rates and do not specify how to maintain security when both QKD and PQC primitives leak information through side-channels. These gaps limit the applicability of hybrid systems in practical, deployed networks. In this work, we advance a recently proposed hybrid QKD-PQC system by integrating tight finite-key security to the QKD primitive and improving the design for better scalability. This hybrid system employs an information-theoretically secure instruction sequence that determines the configurations of different primitives and thus ensures message confidentiality even when both the QKD and the PQC primitives are compromised. The novelty in our work lies in the implementation of the tightest finite-key security to date for the BBM92 protocol and the design improvements in the primitives of the hybrid system that ensure the processing time scales linearly with the size of secret instructions.
title Combined Quantum and Post-Quantum Security Performance Under Finite Keys
topic Quantum Physics
Cryptography and Security
url https://arxiv.org/abs/2512.04429