加密
物理不可克隆功能
稳健性(进化)
计算机科学
认证(法律)
密码学
全息术
多路复用
编码(内存)
计算机硬件
钥匙(锁)
计算机安全
人工智能
光学
电信
物理
基因
生物化学
化学
作者
Rui Xu,Ming Feng,Jinyue Xie,Xu Sang,Jiaxin Yang,Jingru Wang,Yan Li,Adnan Khan,Lisa Liu,Feng Song
标识
DOI:10.1021/acsami.3c14571
摘要
Physically unclonable function (PUF) methods have high security, but their wide application is limited by complex encoding, large database, advanced external characterization equipment, and complicated comparative authentication. Therefore, we creatively propose the physically unclonable holographic encryption and anticounterfeiting based on the light propagation of complex medium and fluorescent labels. As far as we know, this is the first holographic encryption and anticounterfeiting method with a fluorescence physically unclonable property. The proposed method reduces the above requirements of traditional PUF methods and significantly reduces the cost. The angle-multiplexed PUF fluorescent label is the physical secret key. The information is encrypted as computer-generated holograms (CGH). Many physical parameters in the system are used as the parameter secret keys. The Diffie-Hellman key exchange algorithm is improved to transfer parameter secret keys. A variety of complex medium hologram generation methods are proposed and compared. The effectiveness, security, and robustness of the method are studied and analyzed. Finally, a graphical user interface (GUI) is designed for the convenience of users. The advantages of this method include lower PUF encoding complexity, effective reduction of the database size, lower requirements for characterization equipment, and direct use of decrypted information without complicated comparative authentication to reduce misjudgment. It is believed that the method proposed in this paper will pave the way for the popularization and application of PUF-based anticounterfeiting and encryption methods.
科研通智能强力驱动
Strongly Powered by AbleSci AI