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Subcarrier Domain of Multicarrier Continuous-Variable Quantum Key Distribution

Quantum Physics 2014-06-27 v1 Information Theory math.IT

Abstract

We propose the subcarrier domain of multicarrier continuous-variable (CV) quantum key distribution (QKD). In a multicarrier CVQKD scheme, the information is granulated into Gaussian subcarrier CVs and the physical Gaussian link is divided into Gaussian sub-channels. The sub-channels are dedicated for the conveying of the subcarrier CVs. The angular domain utilizes the phase-space angles of the Gaussian subcarrier CVs to construct the physical model of a Gaussian sub-channel. The subcarrier domain injects physical attributes to the description of the subcarrier transmission. We prove that the subcarrier domain is a natural representation of the subcarrier-level transmission in a multicarrier CVQKD scheme. We also extend the subcarrier domain to a multiple-access multicarrier CVQKD setting. We demonstrate the results through the adaptive multicarrier quadrature-division (AMQD) CVQKD scheme and the AMQD-MQA (multiuser quadrature allocation) multiple-access multicarrier scheme. The subcarrier domain representation provides a general apparatus that can be utilized for an arbitrary multicarrier CVQKD scenario. The framework is particularly convenient for experimental multicarrier CVQKD scenarios.

Cite

@article{arxiv.1406.6949,
  title  = {Subcarrier Domain of Multicarrier Continuous-Variable Quantum Key Distribution},
  author = {Laszlo Gyongyosi},
  journal= {arXiv preprint arXiv:1406.6949},
  year   = {2014}
}

Comments

25 pages, 5 figures

R2 v1 2026-06-22T04:48:13.608Z