高速率随机数生成混沌梳的参数化研究

IF 2.3 3区 工程技术 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Photonics Technology Letters Pub Date : 2024-12-25 DOI:10.1109/LPT.2024.3522239
Omnia Nawwar;Kaoru Minoshima;Naoya Kuse
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引用次数: 0

摘要

超快物理随机比特发生器(rbg)支持许多关键应用,从安全通信到计算模拟。混沌状态下基于微谐振器的频率梳已成为一种很有前途的高速随机比特序列源,因为每个梳齿都充当一个独立的随机比特源。本文介绍了不同混沌梳状特性对RBG速率的影响。基于Lugiato-Lefever方程(LLE)进行了参数化研究,研究了射频带宽、光带宽(取决于微谐振器的泵浦功率和线宽)和采样率对产生率的影响。通过分析这些结果,我们建立了选择梳参数的指导方针,以最大限度地提高比特生成率。
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Parametric Study of Chaotic Combs for High-Rate Random Number Generation
Ultrafast physical random bit generators (RBGs) underpin numerous critical applications, from secure communications to computational simulations. Microresonator-based frequency combs in a chaotic state have emerged as a promising source of high-speed random bit sequences, as each comb tooth acts as an independent random bit source. This letter presents the effect of different chaotic comb characteristics on the RBG rate. A parametric study based on the Lugiato-Lefever Equation (LLE) has been implemented to study the effect of RF bandwidth, optical bandwidth (depending on the pump power and linewidth of a microresonator), and sampling rate on the generation rate. By analyzing these results, we establish guidelines for choosing the comb parameters that maximize bit generation rates.
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来源期刊
IEEE Photonics Technology Letters
IEEE Photonics Technology Letters 工程技术-工程:电子与电气
CiteScore
5.00
自引率
3.80%
发文量
404
审稿时长
2.0 months
期刊介绍: IEEE Photonics Technology Letters addresses all aspects of the IEEE Photonics Society Constitutional Field of Interest with emphasis on photonic/lightwave components and applications, laser physics and systems and laser/electro-optics technology. Examples of subject areas for the above areas of concentration are integrated optic and optoelectronic devices, high-power laser arrays (e.g. diode, CO2), free electron lasers, solid, state lasers, laser materials'' interactions and femtosecond laser techniques. The letters journal publishes engineering, applied physics and physics oriented papers. Emphasis is on rapid publication of timely manuscripts. A goal is to provide a focal point of quality engineering-oriented papers in the electro-optics field not found in other rapid-publication journals.
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