Self-balanced real-time photonic scheme for ultrafast random number generation

We propose a real-time self-balanced photonic method for extracting ultrafast random numbers from broadband randomness sources. In place of electronic analog-to-digital converters (ADCs), the balanced photo-detection technology is used to directly quantize optically sampled chaotic pulses into a con...

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Veröffentlicht in:APL photonics 2018-06, Vol.3 (6), p.61301-061301-8
Hauptverfasser: Li, Pu, Guo, Ya, Guo, Yanqiang, Fan, Yuanlong, Guo, Xiaomin, Liu, Xianglian, Shore, K. Alan, Dubrova, Elena, Xu, Bingjie, Wang, Yuncai, Wang, Anbang
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Sprache:eng
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Zusammenfassung:We propose a real-time self-balanced photonic method for extracting ultrafast random numbers from broadband randomness sources. In place of electronic analog-to-digital converters (ADCs), the balanced photo-detection technology is used to directly quantize optically sampled chaotic pulses into a continuous random number stream. Benefitting from ultrafast photo-detection, our method can efficiently eliminate the generation rate bottleneck from electronic ADCs which are required in nearly all the available fast physical random number generators. A proof-of-principle experiment demonstrates that using our approach 10 Gb/s real-time and statistically unbiased random numbers are successfully extracted from a bandwidth-enhanced chaotic source. The generation rate achieved experimentally here is being limited by the bandwidth of the chaotic source. The method described has the potential to attain a real-time rate of 100 Gb/s.
ISSN:2378-0967
2378-0967
DOI:10.1063/1.5029498