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Efficient Quantum Public-Key Encryption From Learning With Errors

Quantum Physics 2021-05-28 v1 Cryptography and Security

Abstract

Our main result is a quantum public-key encryption scheme based on the Extrapolated Dihedral Coset problem (EDCP) which is equivalent, under quantum polynomial-time reductions, to the Learning With Errors (LWE) problem. For limited number of public keys (roughly linear in the security parameter), the proposed scheme is information-theoretically secure. For polynomial number of public keys, breaking the scheme is as hard as solving the LWE problem. The public keys in our scheme are quantum states of size O~(n)\tilde{O}(n) qubits. The key generation and decryption algorithms require O~(n)\tilde{O}(n) qubit operations while the encryption algorithm takes O(1)O(1) qubit operations.

Keywords

Cite

@article{arxiv.2105.12790,
  title  = {Efficient Quantum Public-Key Encryption From Learning With Errors},
  author = {Javad Doliskani},
  journal= {arXiv preprint arXiv:2105.12790},
  year   = {2021}
}