Passive decoy-state quantum key distribution with orbital angular momentum and pulse position modulation

Lian Wang, Yuanyuan Zhou, Xuejun Zhou, Xiao Chen, HuaBin Xu
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Abstract

Combing the orbital angular momentum and pulse position modulation, we propose a novel passive decoy-state quantum key distribution scheme with the single-intensity two-mode source. Besides, we give the lower bound of single-photon counting rate and the upper bound of single-photon error rate. Moreover, the system performance is numerically studied. The simulations demonstrate that the performance of scheme with orbital angular momentum coding is improved in terms of error rate, key generation rate and secure transmission distance. Meanwhile, by using the pulse position modulation technology, the performance is further enhanced. And the longer the frame length, the better the system performance. Therefore, our scheme does not need to modulate the light intensity, and exploits the combination of orbital angular momentum and pulse position modulation to eliminate the basis-dependent flaw and improve the key generation rate. It has certain reference value to the realization of the system.
具有轨道角动量和脉冲位置调制的被动诱饵态量子密钥分配
结合轨道角动量和脉冲位置调制,提出了一种单强度双模源的无源诱饵态量子密钥分配方案。此外,我们还给出了单光子计数率的下界和单光子错误率的上界。并对系统性能进行了数值研究。仿真结果表明,轨道角动量编码方案在误码率、密钥生成率和安全传输距离等方面都得到了改善。同时,采用脉冲位置调制技术,进一步提高了系统的性能。帧长度越长,系统性能越好。因此,我们的方案不需要调制光强,利用轨道角动量和脉冲位置调制的结合来消除基依赖缺陷,提高密钥的生成率。对系统的实现具有一定的参考价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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