Abstract
AbstractIn the emerging era of the internet of things (IoT), ubiquitous sensors continuously collect, consume, store, and communicate a huge volume of information which is becoming increasingly vulnerable to theft and misuse. Modern software cryptosystems require extensive computational infrastructure for implementing ciphering algorithms, making them difficult to be adopted by IoT edge sensors that operate with limited hardware resources and at low energy budgets. Here we propose and experimentally demonstrate an “all-in-one” 8 × 8 array of robust, low-power, and bio-inspired crypto engines monolithically integrated with IoT edge sensors based on two-dimensional (2D) memtransistors. Each engine comprises five 2D memtransistors to accomplish sensing and encoding functionalities. The ciphered information is shown to be secure from an eavesdropper with finite resources and access to deep neural networks. Our hardware platform consists of a total of 320 fully integrated monolayer MoS2-based memtransistors and consumes energy in the range of hundreds of picojoules and offers near-sensor security.
Publisher
Springer Science and Business Media LLC
Subject
General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary
Reference65 articles.
1. Verton, D. & Brownlow, J. Black ice: The invisible threat of cyber-terrorism. (Osborne, 2003).
2. Alfaleh, F., Alfehaid, H., Alanzy, M. & Elkhediri, S. in 2019 2nd International Conference on Computer Applications & Information Security (ICCAIS). 1-4 (IEEE).
3. Katz, J. & Lindell, Y. Introduction to modern cryptography. (CRC press, 2014).
4. Diffie, W. & Hellman, M. New directions in cryptography. IEEE Trans. Inf. Theory 22, 644–654 (1976).
5. Rompel, J. in Proceedings of the twenty-second annual ACM symposium on Theory of computing. 387–394 (ACM).
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