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Cryptanalysis of a Public Key Cryptosystem Based on Data Complexity under Quantum Environment

机译:基于量子环境下数据复杂性的公钥密码系统的密码分析

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Shor presented a quantum algorithm to factor large integers and compute discrete logarithms in polynomial time. As a result, public key cryptosystems, such as RSA, ElGamal and ECC, which are based on these computational assumptions will become insecure with the advent of quantum computers. To construct a secure anti-quantum public-key cryptosystem, Wu et al. introduced the notion of data complexity under quantum environment. Based on the hardness of NP-complete problems and data complexity, they presented a new public key cryptosystem and a signature scheme. Using Shor's quantum algorithm, we break their public key cryptosystem and signature scheme by directly solving the private key from the public key. Therefore, their public key cryptosystem and signature scheme are insecure in a quantum computer.
机译:Shor呈现了量子算法以对多项式的大型整数并计算多项式时间中的离散对数。 因此,基于这些计算假设的RSA,ELGAMAL和ECC等公钥密码系统将随着量子计算机的出现而变得不安全。 构建一个安全的防量子公钥密码系统,Wu等人。 在量子环境下引入了数据复杂性的概念。 基于NP完全问题和数据复杂性的硬度,它们提出了一种新的公钥密码系统和签名方案。 使用SHOS的量子算法,我们通过直接从公钥求解私钥来打破他们的公钥密码系统和签名方案。 因此,他们的公钥密码系统和签名方案是量子计算机中的不安全。

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