Performance improvement of eight-state continuous-variable quantum key distribution with an optical amplifier |
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Authors: | Ying Guo Renjie Li Qin Liao Jian Zhou Duan Huang |
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Affiliation: | School of Information Science and Engineering, Central South University, Changsha 410083, China |
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Abstract: | Discrete modulation is proven to be beneficial to improving the performance of continuous-variable quantum key distribution (CVQKD) in long-distance transmission. In this paper, we suggest a construct to improve the maximal generated secret key rate of discretely modulated eight-state CVQKD using an optical amplifier (OA) with a slight cost of transmission distance. In the proposed scheme, an optical amplifier is exploited to compensate imperfection of Bob's apparatus, so that the generated secret key rate of eight-state protocol is enhanced. Specifically, we investigate two types of optical amplifiers, phase-insensitive amplifier (PIA) and phase-sensitive amplifier (PSA), and thereby obtain approximately equivalent improved performance for eight-state CVQKD system when applying these two different amplifiers. Numeric simulation shows that the proposed scheme can well improve the generated secret key rate of eight-state CVQKD in both asymptotic limit and finite-size regime. We also show that the proposed scheme can achieve the relatively high-rate transmission at long-distance communication system. |
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Keywords: | Quantum key distribution Discrete modulation Continuous variable Optical amplifier |
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