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Fast physical random bit generation based on an optoelectronic delay loop pumped by a semiconductor laser under a modulated optical feedback

机译:基于由半导体激光器在调制光反馈下泵送的光电延迟回路的快速物理随机比特生成

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In this work, we propose and experimentally demonstrate a scheme for generating fast physical random bits (PRBs). For such a scheme, the chaotic signal output from an optoelectronic delay loop (OEDL) pumped by a semiconductor laser (SL) under modulated optical feedback is utilized as the chaotic entropy resource, and the m least significant bits (m-LSBs) extraction and local XOR operation are selected as the post-processing methods. Firstly, through analyzing the influences of some typical parameters on the properties of the chaotic signal, the optimized parameter regions for achieving high quality chaotic signals with weak time-delay signatures and broad bandwidths are determined. Secondly, a high quality chaotic signal under optimized parameters is selected as a chaotic entropy resource, which is sampled and transferred to an original digital bit sequence by an 8-bit analog-to-digital converter (ADC) at a rate of 80 GS/s. Finally, through adopting the m least significant bits (m-LSBs) extraction and logical exclusive OR (XOR) operation to process the original digital bit sequence, a PRB at a rate up to 400 Gbits/s can be generated, which has passed all the NIST tests.
机译:在这项工作中,我们提出并通过实验证明了一种用于产生快速物理随机位(PRB)的方案。对于这样的方案,在调制光学反馈下由半导体激光器(SL)泵浦的光电延迟回路(OEDL)输出的混沌信号用作混沌熵资源,以及M对最低有效位(M-LSB)提取和本地XOR操作被选为后处理方法。首先,通过分析一些典型参数对混沌信号的性能的影响,确定了用于实现具有弱时间延迟签名和广泛带宽的高质量混沌信号的优化参数区域。其次,选择优化参数下的高质量混沌信号作为混沌熵资源,其通过8位模数转换器(ADC)以80gs /的速率进行采样并转移到原始数字位序列。 s。最后,通过采用M-最低有效位(M-LSB)提取和逻辑异常或(XOR)操作来处理原始数字位序列,可以生成高达400 Gbits / s的速率的PRB,这已通过所有NIST测试。

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