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Group Key Establishment in a Quantum-Future Scenario

机译:在量子 - 未来情景下集团重点建立

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摘要

In cryptography, key establishment protocols are often the starting point paving the way towards secure execution of different tasks. Namely, the parties seeking to achieve some cryptographic task, often start by establishing a common high-entropy secret that will eventually be used to secure their communication. In this paper, we put forward a security model for group key establishment (GAKE) with an adversary that may execute efficient quantum algorithms, yet only once the execution of the protocol has concluded. This captures a situation in which keys are to be established in the present, while security guarantees must still be provided in the future when quantum resources may be accessible to a potential adversary. Further, we propose a protocol design that can be proven secure in this model. Our proposal uses password authentication and builds upon efficient and reasonably well understood primitives: a message authentication code and a post-quantum key encapsulation mechanism. The hybrid structure dodges potential efficiency downsides, like large signatures, of some "true" post-quantum authentication techniques, making our protocol a potentially interesting fit for current applications with long-term security needs.
机译:在密码学中,关键建立协议通常是铺平了朝向安全执行不同任务的起点。即,寻求达到一些加密任务的各方常常通过建立一个常见的高熵秘密来开始,这些秘密最终将用于确保他们的沟通。在本文中,我们向组密钥建立(GAKE)提出了一个安全模型,其具有可能执行有效量子算法的对手,但只有一旦执行协议的结论。这捕获了在本发明中建立密钥的情况,而当潜在的对手可以访问量子资源时,将来仍然必须提供安全保证。此外,我们提出了一种协议设计,可以在该模型中证明可以证明安全。我们的提案使用密码身份验证,并在高效且合理地了解的基语上构建:消息认证码和后量子密钥封装机制。混合结构避免了潜在的效率,如大型签名,其中一些“真实”的量子认证技术,使我们的协议具有长期安全需求的当前应用程序可能有趣。

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