Biometric holographic encryption and authentication with multiple optics-biology keys based on inhomogeneous media optics

IF 4.6 2区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY Chinese Journal of Physics Pub Date : 2024-08-19 DOI:10.1016/j.cjph.2024.08.025
Rui Xu , Ming Feng , Jiaxin Yang , Jinyue Xie , Ye Tian , Xu Sang , Jingru Wang , Yanyan Li , Adnan Khan , Feng Song
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Abstract

Biometric authentication has been widely used because of its uniqueness, accuracy, and versatility, but existing methods still have some shortcomings. Because biometric data is stored in the database, once the database is invaded, it will cause a large number of biometric data leakage and illegal use of huge risks; The cost of traditional feature extraction and matching strategy is too high; Biometric is only used for authentication, and its single function cannot meet the increasing security requirements; Methods that rely solely on biometric keys are not secure enough. To overcome these shortcomings, we propose the biometric holographic encryption and authentication with multiple optics-biology keys based on inhomogeneous media optics. The proposed method innovatively combines biometrics and inhomogeneous media optics to achieve dual functions of encryption and authentication. Instead of storing biometric data directly, the encryption and authentication information is encrypted as computer generated holograms in this method and stored in the database to reduce the risk of biometric data leakage. This method has low cost without complicated feature extraction and comparison authentication process. The dual functions of authentication and encryption is more practical. Multiple optics-biology keys improve the security. The security and robustness are analyzed. A graphical user interface (GUI) is designed for the method to promote its application. This work provides new methods and new ideas for the field of optics encryption and authentication, and will certainly have a broad application prospect.

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基于非均质介质光学的多光学生物密钥全息生物识别加密和认证技术
生物识别认证因其唯一性、准确性和通用性而得到广泛应用,但现有方法仍存在一些缺陷。由于生物特征数据存储在数据库中,一旦数据库被入侵,将造成大量生物特征数据泄露,非法使用的风险巨大;传统的特征提取和匹配策略成本过高;生物特征仅用于身份验证,功能单一,不能满足日益增长的安全要求;单纯依赖生物特征密钥的方法不够安全。为了克服这些缺点,我们提出了基于非均质介质光学的多光学-生物密钥的生物全息加密和认证方法。所提出的方法创新性地将生物识别和非均相介质光学相结合,实现了加密和认证的双重功能。该方法不直接存储生物识别数据,而是将加密和认证信息加密为计算机生成的全息图,并存储在数据库中,以降低生物识别数据泄漏的风险。这种方法成本低,没有复杂的特征提取和比对认证过程。认证和加密的双重功能更加实用。多重光学生物密钥提高了安全性。对安全性和稳健性进行了分析。为该方法设计了图形用户界面(GUI),以促进其应用。这项工作为光学加密和认证领域提供了新方法和新思路,必将具有广阔的应用前景。
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来源期刊
Chinese Journal of Physics
Chinese Journal of Physics 物理-物理:综合
CiteScore
8.50
自引率
10.00%
发文量
361
审稿时长
44 days
期刊介绍: The Chinese Journal of Physics publishes important advances in various branches in physics, including statistical and biophysical physics, condensed matter physics, atomic/molecular physics, optics, particle physics and nuclear physics. The editors welcome manuscripts on: -General Physics: Statistical and Quantum Mechanics, etc.- Gravitation and Astrophysics- Elementary Particles and Fields- Nuclear Physics- Atomic, Molecular, and Optical Physics- Quantum Information and Quantum Computation- Fluid Dynamics, Nonlinear Dynamics, Chaos, and Complex Networks- Plasma and Beam Physics- Condensed Matter: Structure, etc.- Condensed Matter: Electronic Properties, etc.- Polymer, Soft Matter, Biological, and Interdisciplinary Physics. CJP publishes regular research papers, feature articles and review papers.
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