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Tightly-Secure Key-Encapsulation Mechanism in the Quantum Random Oracle Model

机译:Quantum随机Oracle模型中的紧密安全键封装机制

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Key-encapsulation mechanisms secure against chosen ciphertext attacks (IND-CCA-secure KEMs) in the quantum random oracle model have been proposed by Boneh, Dagdelen, Fischlin, Lehmann, Schafner, and Zhandry (CRYPTO 2012), Targhi and Unruh (TCC 2016-B), and Hofheinz, Hovelmanns, and Kiltz (TCC 2017). However, all are non-tight and, in particular, security levels of the schemes obtained by these constructions are less than half of original security levels of their building blocks. In this paper, we give a conversion that tightly converts a weakly secure public-key encryption scheme into an IND-CCA-secure KEM in the quantum random oracle model. More precisely, we define a new security notion for deterministic public key encryption (DPKE) called the disjoint simulatability, and we propose a way to convert a disjoint simulatable DPKE scheme into an IND-CCA-secure key-encapsulation mechanism scheme without incurring a significant security degradation. In addition, we give DPKE schemes whose disjoint simulatability is tightly reduced to post-quantum assumptions. As a result, we obtain IND-CCA-secure KEMs tightly reduced to various post-quantum assumptions in the quantum random oracle model.
机译:Boneh,Dagdelen,Fischlin,Lehmann,Schafner和Zhandry(Crypto 2012),Targhi和Unruh(TCC 2016)提出了Quantum Orcent Oracle模型中的钥匙封装机制-b)和Hofheinz,Hovelmanns和Kiltz(TCC 2017)。然而,所有都是不紧密的,特别是,这些结构获得的方案的安全级别小于其构建块的原始安全级别的一半。在本文中,我们提供了一种转换,将弱安全的公钥加密方案紧紧地将弱安全的公钥加密方案转换为Quantum随机Oracle模型中的Ind-CCA-Secure Kem。更确切地说,我们为确定脱编模拟性的确定性公钥加密(DPKE)定义了一个新的安全概念,我们提出了一种方法来将脱位可模拟的DPKE方案转换为IND-CCA-SECHE键封装机制方案,而不会产生重大安全劣化。此外,我们提供DPKE方案,其脱节模拟性紧紧地减少到量子后假设。结果,我们获得了ind-cca-secure kems,紧密地减少了量子随机Oracle模型中的各种量子假设。

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