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One-sided device-independent quantum key distribution: Security, feasibility, and the connection with steering

Physical Review A · 2012 · Vol. 85(1)
Cyril BranciardEric G. CavalcantiS. P. WalbornValerio ScaraniHoward M. Wiseman

Abstract

We analyze the security and feasibility of a protocol for quantum key distribution (QKD) in a context where only one of the two parties trusts his measurement apparatus. This scenario lies naturally between standard QKD, where both parties trust their measurement apparatuses, and device-independent QKD (DI-QKD), where neither do, and can be a natural assumption in some practical situations. We show that the requirements for obtaining secure keys are much easier to meet than for DI-QKD, which opens promising experimental opportunities. We clarify the link between the security of this one-sided DI-QKD scenario and the demonstration of quantum steering, in analogy to the link between DI-QKD and the violation of Bell inequalities.

Quantum Information and CryptographyQuantum Mechanics and ApplicationsQuantum Computing Algorithms and ArchitectureQuantum key distributionPhysicsMeasurement deviceKey (lock)Context (archaeology)Protocol (science)Quantum cryptographyQuantumConnection (principal bundle)Computer security

Funding

  • National Research Foundation
  • Ministry of Education - Singapore
  • Conselho Nacional de Desenvolvimento Científico e Tecnológico
  • Fundação Carlos Chagas Filho de Amparo à Pesquisa do Estado do Rio de Janeiro
  • Australian Research Council
Citations
741
FWCI
47.27
field-weighted impact
References
23
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Cited by
Bell nonlocality
Reviews of Modern Physics · 2014 · 2,529 citations
References
Proposed Experiment to Test Local Hidden-Variable Theories
Physical Review Letters · 1969 · 7,352 citations
The security of practical quantum key distribution
Reviews of Modern Physics · 2009 · 3,528 citations
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