作者
R Zhang, H Jiang, ZR Wang, P Lin, Y Zhuo, D Holcomb, DH Zhang, JJ Yang, Q Xia
发表日期
2018
期刊
Nanoscale
卷号
10
期号
6
页码范围
2721-2726
出版商
Royal Society of Chemistry
简介
Physical unclonable functions have emerged as promising hardware security primitives for device authentication and key generation in the era of the Internet of Things. Herein, we report novel physical unclonable functions built upon the crossbars of nanoscale diffusive memristors that translate the stochastic distribution of Ag clusters in a SiO2 matrix into a random binary bitmap that serves as a device fingerprint. The random dispersion of Ag led to an uneven number of clusters at each cross-point, which in turn resulted in a stochastic ability to switch in the Ag:SiO2 diffusive memristors in an array. The randomness of the dispersion was a barrier to fingerprint cloning and the unique fingerprints of each device were persistent after fabrication. Using an optimized fabrication procedure, we maximized the randomness and achieved an inter-class Hamming distance of 50.68%. We also discovered that the bits were not …
引用总数
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