Wang Tiancheng, Usuda Tsuyoshi Sasaki
Faculty of Engineering, Kanagawa University, Yokohama 221-8686, Kanagawa, Japan.
Graduate School of Information Science and Technology, Aichi Prefectural University, Nagakute 480-1198, Aichi, Japan.
Entropy (Basel). 2022 May 16;24(5):708. doi: 10.3390/e24050708.
We propose an amplitude shift keying-type asymmetric quantum communication (AQC) system that uses an entangled state. As a first step toward development of this system, we evaluated and considered the communication performance of the proposed receiver when applied to the AQC system using a two-mode squeezed vacuum state (TSVS), the maximum quasi-Bell state, and the non-maximum quasi-Bell state, along with an asymmetric classical communication (ACC) system using the coherent state. Specifically, we derived an analytical expression for the error probability of the AQC system using the quasi-Bell state. Comparison of the error probabilities of the ACC system and the AQC systems when using the TSVS and the quasi-Bell state shows that the AQC system using the quasi-Bell state offers a clear performance advantage under specific conditions. Additionally, it was clarified that there are cases where the universal lower bound on the error probability for the AQC system was almost achieved when using the quasi-Bell state, unlike the case in which the TSVS was used.
我们提出了一种使用纠缠态的移幅键控型非对称量子通信(AQC)系统。作为开发该系统的第一步,我们评估并考虑了所提出的接收器在应用于使用双模压缩真空态(TSVS)、最大准贝尔态和非最大准贝尔态的AQC系统时的通信性能,以及使用相干态的非对称经典通信(ACC)系统的通信性能。具体而言,我们推导了使用准贝尔态的AQC系统的误码率解析表达式。对使用TSVS和准贝尔态时ACC系统与AQC系统的误码率进行比较表明,使用准贝尔态的AQC系统在特定条件下具有明显的性能优势。此外,还阐明了与使用TSVS的情况不同,使用准贝尔态时AQC系统的误码率通用下限几乎能够实现。