Quantum-Resistant Cryptography Migration Strategies for Long-Term Data Security in Healthcare

Quantum-Resistant Cryptography Migration Strategies for Long-Term Data Security in Healthcare

Authors

  • Amelia Roberts Department of Computer Science, University of Manchester (UK)

Keywords:

Post-quantum cryptography, migration strategy, healthcare data, cryptographic agility, lattice-based cryptography, hybrid cryptography, long-term data security, HIPAA, NIST PQC

Abstract

 

Healthcare systems store and process sensitive patient data with long retention requirements. The advent of quantum computing poses a future threat to public-key cryptographic primitives widely used for confidentiality, integrity, and authentication. This paper presents a comprehensive, practically actionable framework for migrating healthcare information systems to quantum-resistant cryptography (post-quantum cryptography, PQC). We combine a technical primer on PQC (algorithm families, security proofs, parameter choices), formal definitions (IND-CPA/CCA, EUF-CMA), and mathematical formulations (Learning With Errors, Ring-LWE, code-based hardness) with a detailed migration lifecycle: inventory and risk assessment, prioritized upgrade paths, hybrid deployments, cryptographic agility, key management, archival re-protection, performance evaluation, compliance mapping (HIPAA, local law), and a multi-year roadmap. We include analysis of interoperability challenges in TLS and cloud services, propose benchmarks and testing methodology, and supply recommended policies and timelines tailored to healthcare’s long data-retention periods. The strategy is grounded in current standards work (NIST PQC), national guidance (NCCoE, NCSC), recent literature, and implementation case studies.

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Published

2025-09-30

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