Secure interoperability across heterogeneous blockchains remains one of the most pressing challenges in Web3 with existing bridge protocols vulnerable to both classical exploits and emerging quantum threats. This paper introduces QLink a quantum-safe Layer 3 interoperability protocol that integrates postquantum cryptography (PQC) quantum key distribution (QKD) and hardware security modules (HSMs) into a unified validator architecture. To our knowledge, QLink is the first interoperability framework to combine these mechanisms to secure validator communication proof aggregation and key management. Validators exchange encryption keys through QKD channels, achieving information-theoretic security against interception, while cross-chain proofs are generated and aggregated with NIST-standardized PQC algorithms. Private keys remain sealed inside HSM enclaves mitigating the risk of theft or leakage. Deployed as a dedicated Layer 3 protocol QLink operates independently of Layer 1 and Layer 2 chains providing a scalable decentralized foundation for secure cross-chain messaging and asset transfer. Experimental evaluation using network simulations demonstrates that validator communication overhead remains sub-second while security guarantees extend beyond current bridge architectures to resist both classical and quantum adversaries. By addressing today vulnerabilities and anticipating future quantum threats QLink establishes a practical and future-proof pathway for blockchain interoperability.


翻译:异构区块链间的安全互操作仍然是Web3领域最紧迫的挑战之一,现有桥接协议既面临经典攻击的威胁,也易受新兴量子攻击的影响。本文提出QLink,一种量子安全的第3层互操作协议,它将后量子密码学、量子密钥分发与硬件安全模块集成于统一的验证者架构中。据我们所知,QLink是首个融合上述机制以保障验证者通信、证明聚合与密钥管理的互操作框架。验证者通过QKD信道交换加密密钥,实现抗窃听的信息论安全性;跨链证明的生成与聚合则采用NIST标准化的PQC算法。私钥始终密封于HSM安全飞地内,有效降低密钥被盗或泄露的风险。作为专用第3层协议部署,QLink独立于第1层与第2层链运行,为安全的跨链消息传递与资产转移提供了可扩展的去中心化基础。基于网络模拟的实验评估表明,验证者通信开销保持在亚秒级,同时其安全保证超越现有桥接架构,能够抵御经典与量子攻击。通过应对当前安全漏洞并前瞻未来量子威胁,QLink为区块链互操作性建立了一条实用且面向未来的技术路径。

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