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Enhancing Extractable Quantum Entropy in Vacuum-Based Quantum Random Number Generator

Information-theoretically provable unique true random numbers, which cannot be correlated or controlled by an attacker, can be generated based on quantum measurement of vacuum state and universal-hashing randomness extraction. Quantum entropy in the measurements decides the quality and security of t...

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Autores principales: Guo, Xiaomin, Liu, Ripeng, Li, Pu, Cheng, Chen, Wu, Mingchuan, Guo, Yanqiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7512382/
https://www.ncbi.nlm.nih.gov/pubmed/33266543
http://dx.doi.org/10.3390/e20110819
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author Guo, Xiaomin
Liu, Ripeng
Li, Pu
Cheng, Chen
Wu, Mingchuan
Guo, Yanqiang
author_facet Guo, Xiaomin
Liu, Ripeng
Li, Pu
Cheng, Chen
Wu, Mingchuan
Guo, Yanqiang
author_sort Guo, Xiaomin
collection PubMed
description Information-theoretically provable unique true random numbers, which cannot be correlated or controlled by an attacker, can be generated based on quantum measurement of vacuum state and universal-hashing randomness extraction. Quantum entropy in the measurements decides the quality and security of the random number generator (RNG). At the same time, it directly determines the extraction ratio of true randomness from the raw data, in other words, it obviously affects quantum random bits generating rate. In this work, we commit to enhancing quantum entropy content in the vacuum noise based quantum RNG. We have taken into account main factors in this proposal to establish the theoretical model of quantum entropy content, including the effects of classical noise, the optimum dynamical analog-digital convertor (ADC) range, the local gain and the electronic gain of the homodyne system. We demonstrate that by amplifying the vacuum quantum noise, abundant quantum entropy is extractable in the step of post-processing even classical noise excursion, which may be deliberately induced by an eavesdropper, is large. Based on the discussion and the fact that the bandwidth of quantum vacuum noise is infinite, we propose large dynamical range and moderate TIA gain to pursue higher local oscillator (LO) amplification of vacuum quadrature and broader detection bandwidth in homodyne system. High true randomness extraction ratio together with high sampling rate is attainable. Experimentally, an extraction ratio of true randomness of 85.3% is achieved by finite enhancement of the laser power of the LO when classical noise excursions of the raw data is obvious.
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spelling pubmed-75123822020-11-09 Enhancing Extractable Quantum Entropy in Vacuum-Based Quantum Random Number Generator Guo, Xiaomin Liu, Ripeng Li, Pu Cheng, Chen Wu, Mingchuan Guo, Yanqiang Entropy (Basel) Article Information-theoretically provable unique true random numbers, which cannot be correlated or controlled by an attacker, can be generated based on quantum measurement of vacuum state and universal-hashing randomness extraction. Quantum entropy in the measurements decides the quality and security of the random number generator (RNG). At the same time, it directly determines the extraction ratio of true randomness from the raw data, in other words, it obviously affects quantum random bits generating rate. In this work, we commit to enhancing quantum entropy content in the vacuum noise based quantum RNG. We have taken into account main factors in this proposal to establish the theoretical model of quantum entropy content, including the effects of classical noise, the optimum dynamical analog-digital convertor (ADC) range, the local gain and the electronic gain of the homodyne system. We demonstrate that by amplifying the vacuum quantum noise, abundant quantum entropy is extractable in the step of post-processing even classical noise excursion, which may be deliberately induced by an eavesdropper, is large. Based on the discussion and the fact that the bandwidth of quantum vacuum noise is infinite, we propose large dynamical range and moderate TIA gain to pursue higher local oscillator (LO) amplification of vacuum quadrature and broader detection bandwidth in homodyne system. High true randomness extraction ratio together with high sampling rate is attainable. Experimentally, an extraction ratio of true randomness of 85.3% is achieved by finite enhancement of the laser power of the LO when classical noise excursions of the raw data is obvious. MDPI 2018-10-24 /pmc/articles/PMC7512382/ /pubmed/33266543 http://dx.doi.org/10.3390/e20110819 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Guo, Xiaomin
Liu, Ripeng
Li, Pu
Cheng, Chen
Wu, Mingchuan
Guo, Yanqiang
Enhancing Extractable Quantum Entropy in Vacuum-Based Quantum Random Number Generator
title Enhancing Extractable Quantum Entropy in Vacuum-Based Quantum Random Number Generator
title_full Enhancing Extractable Quantum Entropy in Vacuum-Based Quantum Random Number Generator
title_fullStr Enhancing Extractable Quantum Entropy in Vacuum-Based Quantum Random Number Generator
title_full_unstemmed Enhancing Extractable Quantum Entropy in Vacuum-Based Quantum Random Number Generator
title_short Enhancing Extractable Quantum Entropy in Vacuum-Based Quantum Random Number Generator
title_sort enhancing extractable quantum entropy in vacuum-based quantum random number generator
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7512382/
https://www.ncbi.nlm.nih.gov/pubmed/33266543
http://dx.doi.org/10.3390/e20110819
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