Nature Communications (Apr 2023)

Random fractal-enabled physical unclonable functions with dynamic AI authentication

  • Ningfei Sun,
  • Ziyu Chen,
  • Yanke Wang,
  • Shu Wang,
  • Yong Xie,
  • Qian Liu

DOI
https://doi.org/10.1038/s41467-023-37588-5
Journal volume & issue
Vol. 14, no. 1
pp. 1 – 10

Abstract

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Abstract A physical unclonable function (PUF) is a foundation of anti-counterfeiting processes due to its inherent uniqueness. However, the self-limitation of conventional graphical/spectral PUFs in materials often makes it difficult to have both high code flexibility and high environmental stability in practice. In this study, we propose a universal, fractal-guided film annealing strategy to realize the random Au network-based PUFs that can be designed on demand in complexity, enabling the tags’ intrinsic uniqueness and stability. A dynamic deep learning-based authentication system with an expandable database is built to identify and trace the PUFs, achieving an efficient and reliable authentication with 0% “false positives”. Based on the roughening-enabled plasmonic network platform, Raman-based chemical encoding is conceptionally demonstrated, showing the potential for improvements in security. The configurable tags in mass production can serve as competitive PUF carriers for high-level anti-counterfeiting and data encryption.