首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Parity-based, bias-free optical quantum random number generation with min-entropy estimation
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Parity-based, bias-free optical quantum random number generation with min-entropy estimation

机译:基于奇偶校验的无偏见光学量子随机数,具有MIN熵估计

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We describe the generation of sequences of random bits from the parity of photon counts produced by polarization measurements on a polarization-entangled state. The resulting sequences are bias free, pass the applicable tests in the NIST battery of statistical randomness tests, and are shown to be Borel normal, without the need for experimental calibration stages or postprocessing of the output. Because the photon counts are produced in the course of a measurement of the violation of the Clauser-Horne-Shimony-Holt inequality, we are able to concurrently verify the nonclassical nature of the photon statistics and estimate a lower bound on the min-entropy of the bit-generating source. The rate of bit production in our experiment is around 13 bits/s. (C) 2020 Optical Society of America
机译:我们描述了通过在极化缠结状态下通过极化测量产生的光子计数的阶段生成随机比特的序列。 得到的序列是无偏置的,通过统计随机性测试的NIST电池中的适用测试,并且被示出为BOREL正常,无需实验校准阶段或输出的后处理。 因为光子计数在违反克劳雷霍德 - 霍尔罗特不等式的测量过程中产生的,所以我们能够同时验证光子统计的非生物性质,并估计最小熵的下限 位生成源。 我们实验中的比特制作率约为13位/秒。 (c)2020美国光学学会

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