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Demonstration of 30 Gbit/s Generation of Superconductive True Random Number Generator

机译:演示30 Gbit / s超导真随机数发生器

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True random number generators, which output truly random numbers by extracting entropy from physical phenomena such as thermal and electronic noises, are widely used in the field of the cryptographic communication systems. We have been developing a superconductive true random number generator that can generate truly random number sequences, impossible to be predicted, by utilizing the high-speed operation and high-sensitivity of superconductive integrated circuits. In this study, we have calculated the dependences of correlation of output random bits on the generation rate. Statistical tests have been performed on the basis of the NIST statistical test suite in order to evaluate the quality of the randomness of sequences generated by the superconductive true random number generator at high generation rate. We have generated a random number sequence consisting of 3.2 M-bit at the generation rate of 30 Gbit/s using the superconductive true random number generator, fabricated by the ISTEC-SRL 2.5 ${rm kA/cm}^{2}$ Nb standard process. The generated random number sequences passed 13 kinds of the statistical tests in the NIST statistical test suit, although the 3 tests were not performed because of the shortage of the generated random numbers. The result sufficiently proves that a superconductive true random number generator can generate a high quality of random numbers that can be used for practical cryptographic applications, at a generation rate of up to 30 Gbit/s.
机译:通过从诸如热和电子噪声之类的物理现象中提取熵来输出真正随机数的真正随机数发生器被广泛用于密码通信系统领域。我们正在开发一种超导真随机数发生器,该发生器可以利用超导集成电路的高速运行和高灵敏度来产生无法预测的真随机数序列。在这项研究中,我们已经计算了输出随机位的相关性对生成速率的依赖性。基于NIST统计测试套件进行了统计测试,以便评估超导真随机数发生器以高生成速率生成的序列的随机性。我们使用由ISTEC-SRL 2.5制造的超导真随机数发生器,以30 Gbit / s的生成速率生成了一个由3.2 M位组成的随机数序列。2.5 $ {rm kA / cm} ^ {2} $ Nb标准程序。生成的随机数序列通过了NIST统计测试服中的13种统计测试,尽管由于生成的随机数不足而没有执行这3个测试。该结果充分证明,超导真随机数发生器可以以高达30 Gbit / s的生成速率生成可用于实际密码学应用的高质量随机数。

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