Post quantum cryptographic keys generated with physical unclonable functions

Where it appeared

Published inApplied Sciences
Volume11
Issue6
Pages2801

Identifiers

DOI10.3390/app11062801

Abstract

Lattice and code cryptography can replace existing schemes such as elliptic curve cryptography because of their resistance to quantum computers. In support of public key infrastructures, the distribution, validation and storage of the cryptographic keys is then more complex for handling longer keys. This paper describes practical ways to generate keys from physical unclonable functions, for both lattice and code-based cryptography. Handshakes between client devices containing the physical unclonable functions (PUFs) and a server are used to select sets of addressable positions in the PUFs, from which streams of bits called seeds are generated on demand. The public and private cryptographic key pairs are computed from these seeds together with additional streams of random numbers. The method allows the server to independently validate the public key generated by the PUF, and act as a certificate authority in the network. Technologies such as high performance computing, and graphic processing units can further enhance security by preventing attackers from making this independent validation when only equipped with less powerful computers.

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How it got hereimport via bibtex
Added2026-08-04 00:00 UTC
Approved bya person 2026-08-21 22:06 UTC

Cite it as

@article{cambou2021post,
  title        = {Post quantum cryptographic keys generated with physical unclonable functions},
  author       = {Bertrand Cambou and Michael Gowanlock and Bahattin Yildiz and Dina Ghanaimiandoab and Kaitlyn Lee and Stefan Nelson and Christopher Philabaum and Alyssa Stenberg and Jordan Wright},
  year         = {2021},
  journal      = {Applied Sciences},
  volume       = {11},
  number       = {6},
  pages        = {2801},
  doi          = {10.3390/app11062801},
}

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