4.7 Article

Nano Meets Security: Exploring Nanoelectronic Devices for Security Applications

期刊

PROCEEDINGS OF THE IEEE
卷 103, 期 5, 页码 829-849

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/JPROC.2014.2387353

关键词

Emerging technologies; hardware security; memristors; PCMs; physical unclonable functions

资金

  1. Direct For Computer & Info Scie & Enginr
  2. Division of Computing and Communication Foundations [0926127] Funding Source: National Science Foundation
  3. Division Of Computer and Network Systems
  4. Direct For Computer & Info Scie & Enginr [1059435] Funding Source: National Science Foundation

向作者/读者索取更多资源

Information security has emerged as an important system and application metric. Classical security solutions use algorithmic mechanisms that address a small subset of emerging security requirements, often at high-energy and performance overhead. Further, emerging side-channel and physical attacks can compromise classical security solutions. Hardware security solutions overcome many of these limitations with less energy and performance overhead. Nanoelectronics-based hardware security preserves these advantages while enabling conceptually new security primitives and applications. This tutorial paper shows how one can develop hardware security primitives by exploiting the unique characteristics such as complex device and system models, bidirectional operation, and nonvolatility of emerging nanoelectronic devices. This paper then explains the security capabilities of several emerging nanoelectronic devices: memristors, resistive random-access memory, contact-resistive random-access memory, phase change memories, spin torque-transfer random-access memory, orthogonal spin transfer random access memory, graphene, carbon nanotubes, silicon nanowire field-effect transistors, and nanoelectronic mechanical switches. Further, the paper describes hardware security primitives for authentication, key generation, data encryption, device identification, digital forensics, tamper detection, and thwarting reverse engineering. Finally, the paper summarizes the outstanding challenges in using emerging nanoelectronic devices for security.

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