Computational security of quantum encryption

Open Access
Authors
  • G. Alagic
  • A. Broadbent
  • B. Fefferman
  • T. Gagliardoni
Publication date 2016
Host editors
  • A.C.A. Nascimento
  • P. Barreto
Book title Information Theoretic Security
Book subtitle 9th International Conference, ICITS 2016, Tacoma, WA, USA, August 9–12, 2016 : revised selected papers
ISBN
  • 9783319491745
ISBN (electronic)
  • 9783319491752
Series Lecture Notes in Computer Science
Event 9th International Conference on Information-Theoretic Security, ICITS 2016
Pages (from-to) 47-71
Number of pages 25
Publisher Cham: Springer
Organisations
  • Faculty of Science (FNWI)
  • Interfacultary Research - Institute for Logic, Language and Computation (ILLC)
Abstract

Quantum-mechanical devices have the potential to transform cryptography. Most research in this area has focused either on the information-theoretic advantages of quantum protocols or on the security of classical cryptographic schemes against quantum attacks. In this work, we initiate the study of another relevant topic: the encryption of quantum data in the computational setting. In this direction, we establish quantum versions of several fundamental classical results. First, we develop natural definitions for private-key and public-key encryption schemes for quantum data. We then define notions of semantic security and indistinguishability, and, in analogy with the classical work of Goldwasser and Micali, show that these notions are equivalent. Finally, we construct secure quantum encryption schemes from basic primitives. In particular, we show that quantum-secure one-way functions imply INDCCA1- secure symmetric-key quantum encryption, and that quantumsecure trapdoor one-way permutations imply semantically-secure publickey quantum encryption.

Document type Conference contribution
Language English
Published at https://doi.org/10.1007/978-3-319-49175-2_3
Published at https://arxiv.org/abs/1602.01441
Other links https://www.scopus.com/pages/publications/84996479888
Downloads
1602.01441.pd (Accepted author manuscript)
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