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重新审视丝绸:无透镜光学物理不可克隆函数。

Revisiting silk: a lens-free optical physical unclonable function.

机构信息

School of Electrical Engineering and Computer Science (EECS), Gwangju Institute of Science and Technology, 123, Cheomdangwagi-ro, Buk-gu, Gwangju, 61005, Republic of Korea.

Department of Electronics Engineering, Pusan National University, 2 Busandaehakro 63 beon-gil, Geumjeong-gu, Busan, 46241, Republic of Korea.

出版信息

Nat Commun. 2022 Jan 11;13(1):247. doi: 10.1038/s41467-021-27278-5.

Abstract

For modern security, devices, individuals, and communications require unprecedentedly unique identifiers and cryptographic keys. One emerging method for guaranteeing digital security is to take advantage of a physical unclonable function. Surprisingly, native silk, which has been commonly utilized in everyday life as textiles, can be applied as a unique tag material, thereby removing the necessary apparatus for optical physical unclonable functions, such as an objective lens or a coherent light source. Randomly distributed fibers in silk generate spatially chaotic diffractions, forming self-focused spots on the millimeter scale. The silk-based physical unclonable function has a self-focusing, low-cost, and eco-friendly feature without relying on pre-/post-process for security tag creation. Using these properties, we implement a lens-free, optical, and portable physical unclonable function with silk identification cards and study its characteristics and reliability in a systemic manner. We further demonstrate the feasibility of the physical unclonable functions in two modes: authentication and data encryption.

摘要

对于现代安全而言,设备、个人和通信都需要前所未有的唯一标识符和加密密钥。一种新兴的数字安全保障方法是利用物理不可克隆函数。令人惊讶的是,天然丝绸作为一种日常用品,已经广泛应用于纺织领域,现在也可以作为一种独特的标签材料,从而无需使用光学物理不可克隆函数所需的设备,如物镜或相干光源。丝绸中的随机分布纤维会产生空间混沌衍射,在毫米尺度上形成自聚焦点。基于丝绸的物理不可克隆函数具有自聚焦、低成本和环保的特点,无需依赖于安全标签创建的预/后处理。利用这些特性,我们实现了一种无透镜、光学和便携式的基于丝绸的物理不可克隆函数,并以系统的方式研究了其特性和可靠性。我们进一步演示了物理不可克隆函数在两种模式下的可行性:认证和数据加密。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/14eb/8752800/b8c6628818b9/41467_2021_27278_Fig1_HTML.jpg

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