| name | quantum-resistant-network-architecture |
| description | Post-quantum cryptography network architecture methodology covering PQC primitives, protocols (TLS, SSH), and best practices for network security migration. Addresses architectural consequences of post-quantum transition for networked systems including mobile networks, industrial IoT, and large-scale infrastructure. Use when designing post-quantum network security, migrating to PQC protocols, or evaluating quantum-resistant network architectures. |
| metadata | {"arxiv_id":"2605.04129","published":"2026-05-05","authors":"","tags":["quantum","network-security","post-quantum","cryptography","PQC","TLS","architecture"]} |
Quantum-Resistant Network Architecture
Core Concept
Large-scale quantum computers threaten current public-key cryptographic foundations. While PQC primitives and protocol adaptations (TLS, SSH) are being standardized, the broader architectural consequences for networked systems remain underexplored.
Key Methodology
- PQC Primitive Assessment: Evaluate post-quantum cryptographic primitives for network deployment
- Protocol Adaptation Analysis: Study PQC integration into existing network protocols (TLS, SSH, etc.)
- Architectural Impact: Assess structural changes needed for post-quantum network transitions
- Deployment Best Practices: Practical guidelines for real-world PQC deployments in mobile, industrial, and enterprise networks
Implementation Patterns
- Migrate network protocols to PQC primitives systematically
- Design network architectures resilient to quantum computing threats
- Evaluate hybrid classical-quantum security during transition period
- Plan for backward compatibility during PQC migration
Applications
- Post-quantum network security architecture design
- PQC protocol migration planning
- Quantum-resistant infrastructure deployment
- Mobile network and industrial IoT quantum security
Activation
quantum, network-security, post-quantum, PQC, cryptography, architecture, TLS, migration, quantum-resistant