Post-Quantum Cryptography: Securing Critical Infrastructure Against Emerging Quantum Threats
Pankaj Ramchandra Chandre, Hyder Ali Hingoliwala, Amit Uttarkar, Bhagyashree D. Shendkar, Deepali Lokare, Palash Sontakke · 2024
The rapid advancements in quantum computing pose significant threats to traditional cryptographic systems, which are foundational to securing modern digital infrastructure. Cryptosystems like RSA and ECC, currently relied upon for secure communications, are vulnerable to quantum attacks, necessitating the development of post-quantum cryptography (PQC). The proposed methodology in this paper focuses on safeguarding critical infrastructure from quantum-based cyberattacks by leveraging PQC. The framework integrates several key strategies: hybrid cryptography, which combines classical and post-quantum algorithms to ensure security even as quantum threats evolve; quantum key distribution (QKD), ensuring secure communication by detecting any interception attempts; and post-quantum algorithms designed to resist quantum computing capabilities. The methodology also includes a robust security layer with incident response and threat monitoring systems to detect anomalies and initiate rapid responses to potential attacks. This holistic approach secures vital sectors like healthcare, energy, and telecommunications by future-proofing cryptographic measures against quantum threats.