| Literature DB >> 27607653 |
Huasheng Li, Chao Wang, Peng Huang, Duan Huang, Tao Wang, Guihua Zeng.
Abstract
In a practical continuous-variable quantum key distribution system, finite sampling bandwidth of the employed analog-to-digital converter at the receiver's side may lead to inaccurate results of pulse peak sampling. Then, errors in the parameters estimation resulted. Subsequently, the system performance decreases and security loopholes are exposed to eavesdroppers. In this paper, we propose a novel data acquisition scheme which consists of two parts, i.e., a dynamic delay adjusting module and a statistical power feedback-control algorithm. The proposed scheme may improve dramatically the data acquisition precision of pulse peak sampling and remove the finite sampling bandwidth effects. Moreover, the optimal peak sampling position of a pulse signal can be dynamically calibrated through monitoring the change of the statistical power of the sampled data in the proposed scheme. This helps to resist against some practical attacks, such as the well-known local oscillator calibration attack.Year: 2016 PMID: 27607653 DOI: 10.1364/OE.24.020481
Source DB: PubMed Journal: Opt Express ISSN: 1094-4087 Impact factor: 3.894