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Quantum Random Number Generator with One and Two Entropy Sources

机译:具有一和两个熵源的量子随机数发生器

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Quantum random number generators (QRNGs) are an integral part of quantum key distribution (QKD) systems. To better understand the inherent physical processes, we compare the random numbers generated by two separate schemes, one is based on entropy (arrival time of photons) and another with an additional source of entropy (space) i.e, path superposition of arrival time of photons from a weak coherent source on a gated InGaAs single photon detector. Both experiments yield bits that appear random. However, they satisfy different criteria of randomness. The weak coherent source has a Poissonian distribution and extracting the variation about the arrival time of photons on gated SPD yields a source of random numbers that pass most of the Dieharder Tests. With the inclusion of superposition, we obtain random numbers that pass all the Dieharder tests. The physical origins of the random numbers in the two experiments is different, one is single entropy source based and other one is two entropy source based, and this is reflected in the outcomes of the different tests for randomness.
机译:量子随机数生成器(QRNG)是量子密钥分发(QKD)系统的组成部分。为了更好地了解固有的物理过程,我们比较了两种不同方案生成的随机数,一种是基于熵(光子到达时间),另一种是基于附加的熵源(空间),即光子到达时间的路径叠加来自门控InGaAs单光子检测器上的弱相干源。这两个实验产生的位似乎都是随机的。但是,它们满足不同的随机性标准。弱相干源具有泊松分布,提取光子在门控SPD上到达时间的变化会产生通过大多数Dieharder测试的随机数源。通过添加叠加,我们获得了通过所有Dieharder检验的随机数。在两个实验中,随机数的物理起源是不同的,一个是基于单个熵源,另一个是基于两个熵源,这反映在不同的随机性测试结果中。

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