基于改进认证方法的新型量子随机数发生器

M. Iavich, Georgia Tbilisi, T. Kuchukhidze, G. Iashvili, S. Gnatyuk, R. Bocu
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引用次数: 0

摘要

随机数在许多领域发挥着重要作用,例如加密、密码学、静态分析、仿真。它也是科学和工程的基础资源。有一些算法生成的数字类似于随机分布,但实际上不是随机的,称为伪随机数生成器。在许多情况下,要解决的任务是基于随机数的不可预测性,在伪随机数生成器的情况下,不能保证这一点,需要真正的随机性。在这种情况下,我们使用真实随机数生成器,其随机性的来源是不可预测的随机事件。量子随机数发生器(qrng)基于量子测量的固有随机性生成实随机数。我们的目标是以较低的成本生成快速随机数。同时,高度的随机性也是必不可少的。通过量子力学,我们可以利用光子的不可预测行为来获得真实的数字,这是许多现代密码协议的基础。信任加密随机数生成器只生成真随机数是至关重要的。这就是为什么需要认证方法,它将检查设备的操作和生成的随机比特的质量。提出了一种改进的基于到达时间的量子随机数发生器。它使用检测器的简单版本,要求很少。这种新颖的QRNG在每个光子探测中产生一个以上的随机比特。这是相当有效的,并且具有高度的随机性。分析了自检测和器件无关的量子随机数生成方法。确定了两种方法的优缺点。提出了一种新的量子随机数发生器(QRNG)半自检认证方法的模型。这种方法结合了不同类型的认证方法,相当安全高效。最后,将新的认证方法集成到新的量子随机数生成器模型中。分析了其安全性和效率。主题是:密码学,数学模拟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Novel Quantum Random Number Generator with the Improved Certification Method
: Random numbers play an important role in many areas, for example, encryption, cryptography, static analysis, simulations. It is also a fundamental resource in science and engineering. There are algorithmically generated numbers that are similar to random distributions, but are not actually random, called pseudo random number generators. In many cases the tasks to be solved are based on the unpredictability of random numbers, which cannot be guaranteed in the case of pseudo random number generators, true randomness is required. In such situations, we use real random number generators whose source of randomness is unpredictable random events. Quantum Random Number Generators (QRNGs) generate real random numbers based on the inherent randomness of quantum measurements. Our goal is to generate fast random numbers at a lower cost. At the same time, a high level of randomness is essential. Through quantum mechanics, we can obtain true numbers using the unpredictable behavior of a photon, which is the basis of many modern cryptographic protocols. It is essential to trust cryptographic random number generators to generate only true random numbers. This is why certification methods are needed which will check both the operation of the device and the quality of the random bits generated. We present the improved novel quantum random number generator, which is based the on time of arrival QRNG. It uses the simple version of the detectors with few requirements. The novel QRNG produces more than one random bit per each photon detection. It is rather efficient and has a high level of randomness. Self-testing as well as device independent quantum random number generation methods are analyzed. The advantages and disadvantages of both methods are identified. The model of a novel semi self-testing certification method for quantum random number generators (QRNG) is offered in the paper. This method combines different types of certification approaches and is rather secure and efficient. Finally, the novel certification method is integrated into the model of the new quantum random number generator. The paper analyzes its security and efficiency. topics are: cryptography, mathematical simulations.
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