Title
Trusted Noise in Continuous-Variable Quantum Key Distribution: A Threat and a Defense
Abstract
We address the role of the phase-insensitive trusted preparation and detection noise in the security of a continuous-variable quantum key distribution, considering the Gaussian protocols on the basis of coherent and squeezed states and studying them in the conditions of Gaussian lossy and noisy channels. The influence of such a noise on the security of Gaussian quantum cryptography can be crucial, even despite the fact that a noise is trusted, due to a strongly nonlinear behavior of the quantum entropies involved in the security analysis. We recapitulate the known effect of the preparation noise in both direct and reverse-reconciliation protocols, as well as the detection noise in the reverse-reconciliation scenario. As a new result, we show the negative role of the trusted detection noise in the direct-reconciliation scheme. We also describe the role of the trusted preparation or detection noise added at the reference side of the protocols in improving the robustness of the protocols to the channel noise, confirming the positive effect for the coherent-state reverse-reconciliation protocol. Finally, we address the combined effect of trusted noise added both in the source and the detector.
Year
DOI
Venue
2016
10.3390/e18010020
ENTROPY
Keywords
Field
DocType
quantum cryptography,quantum optics,quantum key distribution,continuous variables,quantum entanglement,coherent states,squeezed states
Quantum key distribution,Mathematical optimization,Electronic engineering,Theoretical computer science,Quantum amplifier,Quantum limit,Quantum cryptography,Quantum noise,Mathematics,Quantum capacity,Quantum error correction,Quantum network
Journal
Volume
Issue
ISSN
18
1
1099-4300
Citations 
PageRank 
References 
3
0.70
6
Authors
2
Name
Order
Citations
PageRank
Vladyslav C. Usenko1528.53
Radim Filip262.90