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Naya Nagy

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Review Open access Aug 2026

When and How to Use Post-Quantum Cryptography: A Systematic Literature Review

Post-quantum cryptography (PQC) is driven by the threat posed by quantum computers, particularly the harvest-now-decrypt-later attack. PQC aims to prepare classical systems and hardware to become resilient against quantum attacks. This research discusses the system vulnerabilities, the need to migrate to PQC, and how to integrate this migration. PQC has become one of the solutions for addressing today’s vulnerabilities and threats while increasing security. The paper concludes that harvest-now-decrypt-later, Q-Day attacks, and new quantum attacks are today’s most critical threats, which can be addressed by deploying PQC solutions and, thus, increasing security. This research proposes a conceptual multi-phased model framework for the migration. The framework first addresses system objectives, goals and assets, then ranks assets based on the highest sensitivity. Crypto-Agility is achieved via the automation of PQC migration, such as the automation of re-keying endpoints, followed by the automation of auditing and testing of each migration stage. Human judgment is required to review the migration process. Once one asset is successfully transitioned, the framework goes to the next highest asset; otherwise, testing is repeated. This is expected to help systems migrate at the lowest cost and with the fewest consequences. However, the limitation of PQC migration is its high resource cost, time, requirement of human professionals, burden on existing systems, and financial expenses. Lastly, the paper recommends creating an ML model to help rank a system’s data and vulnerabilities. Moreover, the paper recommends conducting experiments to evaluate the effectiveness of the proposed framework. In addition, the paper recommends performing migration in relation to a real-world company.

Tasneem Annahdi, Albandari Alsumayt, Naya Nagy · 0 citations
Open access Aug 2026

AERO-GUARD: A Post-Quantum Mutual Authentication Drone Protocol with Homomorphic Encryption for Secure Road Surveillance in Smart Cities

Formal verification results demonstrate that AERO-GUARD satisfies the targeted security properties, including mutual authentication, secrecy preservation, and replay resistance, confirming the protocol’s resilience against common authentication attacks.

Albandari Alsumayt, Arwa Almalki, Reema Almassary et al. · 0 citations

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