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Emerging Physical Unclonable Functions With Nanotechnology

机译:纳米技术新兴的物理不可克隆的功能

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Physical unclonable functions (PUFs) are increasingly used for authentication and identification applications as well as the cryptographic key generation. An important feature of a PUF is the reliance on minute random variations in the fabricated hardware to derive a trusted random key. Currently, most PUF designs focus on exploiting process variations intrinsic to the CMOS technology. In recent years, progress in emerging nanoelectronic devices has demonstrated an increase in variation as a consequence of scaling down to the nanoregion. To date, emerging PUFs with nanotechnology have not been fully established, but they are expected to emerge. Initial research in this area aims to provide security primitives for emerging integrated circuits with nanotechnology. In this paper, we review emerging nanotechnology-based PUFs.
机译:物理不可克隆功能(PUF)越来越多地用于身份验证和标识应用程序以及加密密钥生成。 PUF的一个重要功能是依靠制造的硬件中的微小随机变化来得出可信的随机密钥。当前,大多数PUF设计都专注于利用CMOS技术固有的工艺变化。近年来,由于缩小到纳米区域,新兴的纳米电子器件的进步已显示出变化的增加。迄今为止,尚未完全建立具有纳米技术的新兴PUF,但预计它们会出现。该领域的初步研究旨在为采用纳米技术的新兴集成电路提供安全原语。在本文中,我们回顾了新兴的基于纳米技术的PUF。

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