Optical physical unclonable functions based on Förster resonant energy transfer in multi-color quantum dots

  • Kim, Kisu; 
  • Moon, Yuhyun; 
  • Kim, Yeongkwon; 
  • Shin, Sangho; 
  • Cheng Bi, Jian; 
  • ... Jang, Byung Chul; 
  • 외 2명
Citations

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3
Citations

SCOPUS

3

초록

The rapid expansion of the Internet of Things (IoT) has significantly raised concerns over secure identification and authentication of IoT devices. While physical unclonable function (PUF)-based anticounterfeiting cryptography shows promise, implementing multi-factor authentication (MFA) system with resource-constrained PUF device remains a significant challenge. Here, we demonstrate a multidimensional-encoded optical PUF fabricated with multi-color quantum dots (mQDs), resilient to machine learning attacks, for use in anticounterfeiting MFA. Randomly distributed mQDs in a periodic nanostructure fabricated via nanoimprint lithography generate spatially chaotic, unpredictable multiple security keys when ultraviolet (UV) light is only illuminated. Photoluminescence measurements revealed irregular mQD emission, where disordered distribution-induced Förster resonant energy transfer produces unpredictable color patterns. Our PUF-induced multiple keys were validated through advanced PUF metrics like uniformity, uniqueness, correlation factor, entropy, and even resilience to machine learning attack. We further demonstrate efficient implementation of a cryptography protocol with MFA system for IoT applications using mQDs-based optical PUFs. © The Author(s) 2025.

키워드

PRIMITIVES; BIOSENSORS; MEMORY
제목
Optical physical unclonable functions based on Förster resonant energy transfer in multi-color quantum dots
저자
Kim, Kisu; Moon, Yuhyun; Kim, Yeongkwon; Shin, Sangho; Cheng Bi, Jian; Jung, Joo-yun; Jang, Byung Chul; Ju, Byeongkwon
DOI
10.1038/s43246-025-00984-z
발행일
2025-11
유형
Article
저널명
Communications Materials
권
6
호
1