Light in, sound keys out: photoacoustic PUFs from stochastic nanocomposites

  • Park, Taehyun
  • Kim, Junhyung
  • Ko, Raksan
  • Park, Byullee
  • Yoo, Hocheon
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초록

We present a concept of physically unclonable functions utilizing the photoacoustic effect to generate structurally random, inference-resistant cryptographic keys. The system consists of a CuO/SnO2 nanoparticle composite, where CuO acts as a visible-range absorber and SnO2 serves as a non-absorbing dispersive matrix. Nanosecond laser pulses induce localized heating and acoustic wave emission, providing spatially heterogeneous photoacoustic signals that are digitized into binary matrices. Evaluations across ten devices yielded a bit uniformity of 49.54%, inter-device Hamming distance of 49.69%, entropy of 0.983, and bit aliasing of 49.38%-all approaching ideal values for secure key generation. Machine learning attacks using logistic regression and support vector machines failed to infer underlying patterns, with prediction accuracies of 53.53% and 52.54%. The device maintains cryptographic performance after transfer to diverse substrates, including human skin, highlighting its mechanical adaptability. This subsurface, light-to-sound-based approach offers a scalable platform for secure authentication on flexible or opaque surfaces.

키워드

Copper OxideTin OxideCopper OxideNanocompositeNanoparticleTin OxideAcoustic WaveHeatingInstrumentationRegression AnalysisArticleControlled StudyCryptographyMachine LearningPhotoacousticsSupport Vector MachineArticleEntropyHumanLaserLightLogistic Regression AnalysisPredictionSoundcopper oxidenanocompositenanoparticletin oxide
제목
Light in, sound keys out: photoacoustic PUFs from stochastic nanocomposites
저자
Park, TaehyunKim, JunhyungKo, RaksanPark, ByulleeYoo, Hocheon
DOI
10.1038/s41467-025-62747-1
발행일
2025-08
유형
Article
저널명
Nature Communications
16
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