论文标题
从磁性隧道连接的切换概率中生成可证明的安全随机性
Provably-secure randomness generation from switching probability of magnetic tunnel junctions
论文作者
论文摘要
近年来,基于磁性隧道连接(MTJ)的真正随机数发生器(TRNG)变得越来越有吸引力。这是因为基于MTJ的TRNG比传统的基于CMOS的TRNG具有一些优势,例如较小的区域和更简单的结构。但是,迄今为止,尚未有任何工作能够量化基于MTJ的TRNG的原始输出质量,并进行了合适的随机性提取以产生可证明的安全随机位,与基于CMOS的同类产品不同。在这项工作中,我们实现了基于MTJ的TRNG并表征了原始输出的熵。使用此信息,我们执行后处理以提取一组被证明是安全的随机位。
In recent years, true random number generators (TRNGs) based on magnetic tunnelling junction (MTJ) have become increasingly attractive. This is because MTJ-based TRNGs offer some advantages over traditional CMOS-based TRNGs, such as smaller area and simpler structure. However, there has been no work thus far that quantified the quality of the raw output of an MTJ-based TRNG and performed suitable randomness extraction to produce provably-secure random bits, unlike their CMOS-based counterparts. In this work, we implement an MTJ-based TRNG and characterise the entropy of the raw output. Using this information, we perform post-processing to extract a set of random bits which are provably-secure.