Publication | Open Access
Postprocessing for quantum random-number generators: Entropy evaluation and randomness extraction
231
Citations
21
References
2013
Year
EngineeringQuantum RandomnessClassical RandomnessRandomness ExtractionQuantum ComputingQuantum Optimization AlgorithmQuantum EntanglementQuantum ScienceQuantum CryptographyQuantum SecurityPhysicsQuantum AlgorithmQuantum InformationProbability TheoryComputer SciencePseudorandom Number GeneratorQuantum Random-number GeneratorsEntropyNatural Sciences
Quantum random-number generators (QRNGs) can offer a means to generate information-theoretically provable random numbers, in principle. In practice, unfortunately, the quantum randomness is inevitably mixed with classical randomness due to classical noises. To distill this quantum randomness, one needs to quantify the randomness of the source and apply a randomness extractor. Here, we propose a generic framework for evaluating quantum randomness of real-life QRNGs by min-entropy, and apply it to two different existing quantum random-number systems in the literature. Moreover, we provide a guideline of QRNG data postprocessing for which we implement two information-theoretically provable randomness extractors: Toeplitz-hashing extractor and Trevisan's extractor.
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