Hardware-based security devices using a physical unclonable function created by the irregular grain boundaries found in perovskite calcium titanate

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5
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6

초록

The IoT era necessitated the need for hardware-based security devices due to their strong resistance to hacking compared to software-based systems, which are limited by CPU usage and performance. Hardware-based systems are more unpredictable due to their unique and non-discernible external properties. This research focused on developing a security device based on lead-free metal oxide CaTiO3 perovskite material with irregular electrical characteristics, known as physical unclonable functions. These irregularities were created by increasing the number of grain boundaries on the device surface through high-temperature annealing, resulting in greater adsorbed oxygen. The outcome was a highly random and unique security key using irregular electrical char-acteristics with 49.53% uniformity and a 46.55% inter-Hamming distance.

키워드

Physical Unclonable Function; Hardware -based security system; Perovskite; Grain boundary; Metal oxide; CATIO3; THIN
제목
Hardware-based security devices using a physical unclonable function created by the irregular grain boundaries found in perovskite calcium titanate
저자
Lee, Subin; Lee, Eun Kwang; Jang, Byung Chul; Yoo, Hocheon
DOI
10.1016/j.jallcom.2023.172329
발행일
2023-12-25
유형
Article
저널명
Journal of Alloys and Compounds
권
969