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KEM Combiners

机译:KEM合路器

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摘要

Key-encapsulation mechanisms (KEMs) are a common stepping stone for constructing public-key encryption. Secure KEMs can be built from diverse assumptions, including ones related to integer factorization, discrete logarithms, error correcting codes, or lattices. In light of the recent NIST call for post-quantum secure PKE, the zoo of KEMs that are believed to be secure continues to grow. Yet, on the question of which is the most secure KEM opinions are divided. While using the best candidate might actually not seem necessary to survive everyday life situations, placing a wrong bet can actually be devastating, should the employed KEM eventually turn out to be vulnerable.We introduce KEM combiners as a way to garner trust from different KEM constructions, rather than relying on a single one: We present efficient black-box constructions that, given any set of `ingredient' KEMs, yield a new KEM that is (CCA) secure as long as at least one of the ingredient KEMs is.As building blocks our constructions use cryptographic hash functions and blockciphers. Some corresponding security proofs require idealized models for these primitives, others get along on standard assumptions.
机译:密钥封装机制(KEM)是构建公共密钥加密的常见垫脚石。可以从多种假设中构建安全的KEM,包括与整数分解,离散对数,纠错码或晶格有关的假设。根据NIST最近对量子后安全PKE的呼吁,被认为是安全的KEM动物园越来越多。然而,关于哪个是最安全的KEM意见分歧。虽然使用最佳的候选人似乎不一定能在日常生活中生存,但如果所雇佣的KEM最终变得脆弱,下错赌注实际上可能是毁灭性的。我们引入KEM合并器,以此来获得来自不同KEM结构的信任而不是依赖于一个:我们提供了有效的黑匣子构造,只要有任何一组``成分''KEM,只要至少一个成分KEM是安全的,它就可以产生(CCA)安全的新KEM。构造块我们的构造使用加密哈希函数和块密码。一些相应的安全证明要求这些原语具有理想的模型,而另一些则遵循标准假设。

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