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  4. CNT-PUFs: Highly Robust and Heat-Tolerant Carbon-Nanotube-Based Physical Unclonable Functions
 
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2023
Journal Article
Title

CNT-PUFs: Highly Robust and Heat-Tolerant Carbon-Nanotube-Based Physical Unclonable Functions

Abstract
In this work, we explored a highly robust and unique Physical Unclonable Function (PUF) based on the stochastic assembly of single-walled Carbon NanoTubes (CNTs) integrated within a wafer-level technology. Our work demonstrated that the proposed CNT-based PUFs are exceptionally robust with an average fractional intra-device Hamming distance well below 0.01 both at room temperature and under varying temperatures in the range from 23 ∘C to 120 ∘C. We attributed the excellent heat tolerance to comparatively low activation energies of less than 40 meV extracted from an Arrhenius plot. As the number of unstable bits in the examined implementation is extremely low, our devices allow for a lightweight and simple error correction, just by selecting stable cells, thereby diminishing the need for complex error correction. Through a significant number of tests, we demonstrated the capability of novel nanomaterial devices to serve as highly efficient hardware security primitives.
Author(s)
Frank, Florian
Böttger, Simon
Fraunhofer-Institut für Elektronische Nanosysteme ENAS  
Mexis, Nico
Anagnostopoulos, Nikolaos Athanasios
Mohamed, Ali
Hartmann, Martin
Fraunhofer-Institut für Elektronische Nanosysteme ENAS  
Kuhn, Harald  
Fraunhofer-Institut für Elektronische Nanosysteme ENAS  
Helke, Christian
Fraunhofer-Institut für Elektronische Nanosysteme ENAS  
Arul, Tolga
Katzenbeisser, Stefan
Hermann, Sascha  
Fraunhofer-Institut für Elektronische Nanosysteme ENAS  
Journal
Nanomaterials  
Open Access
DOI
10.3390/nano13222930
Additional link
Full text
Language
English
Fraunhofer-Institut für Elektronische Nanosysteme ENAS  
Keyword(s)
  • Carbon NanoTube (CNT)

  • hardware security

  • Internet of Things (IoT)

  • Nanomaterials (NMs)

  • Physical Unclonable Function (PUF)

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  • security

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