论文标题
收发器设计以达到纠缠辅助通信能力
Transceiver designs to attain the entanglement assisted communications capacity
论文作者
论文摘要
预共享的纠缠可以显着提高高热噪声和低光泽发射机状态的通信速率。在这个方案中,对于具有添加剂热噪声的有损的遗传通道,纠缠辅助能力与孔波容量之间的比率 - 量子力学允许的最大可靠频率率,而没有任何预共享纠缠 - 符合$ \ log(1/{\ bar n} _ {\ rm rm s} $ phot phot phot, n} _ {\ rm s} \ ll 1 $。因此,前共享的纠缠,例如,由量子互联网或卫星辅助量子链路分发,有望显着改善低功率射频通信。在本文中,我们提出了一对结构化量子收发器设计,以利用可产生的连续变化的预共享纠缠,例如,从下转换源,二进制相调制和非高斯联合检测到代码单词块,以实现这种扩展的能力增强定律。此外,我们使用前端描述了对上述接收器的修改,该前端使用了总和频率生成,并用动态编程的可在线两模式挤压器和接收器后端充分利用接收器前端的输出,通过使用非损害性多层液泡效率进行分类,以实现接收器的前端输出。
Pre-shared entanglement can significantly boost communication rates in the high thermal noise and low-brightness transmitter regime. In this regime, for a lossy-bosonic channel with additive thermal noise, the ratio between the entanglement-assisted capacity and the Holevo capacity - the maximum reliable-communications rate permitted by quantum mechanics without any pre-shared entanglement - scales as $\log(1/{\bar N}_{\rm S})$, where the mean transmitted photon number per mode, ${\bar N}_{\rm S} \ll 1$. Thus, pre-shared entanglement, e.g., distributed by the quantum internet or a satellite-assisted quantum link, promises to significantly improve low-power radio-frequency communications. In this paper, we propose a pair of structured quantum transceiver designs that leverage continuous-variable pre-shared entanglement generated, e.g., from a down-conversion source, binary phase modulation, and non-Gaussian joint detection over a code word block, to achieve this scaling law of capacity enhancement. Further, we describe a modification to the aforesaid receiver using a front-end that uses sum-frequency generation sandwiched with dynamically-programmable in-line two-mode squeezers, and a receiver back-end that takes full advantage of the output of the receiver's front-end by employing a non-destructive multimode vacuum-or-not measurement to achieve the entanglement-assisted classical communications capacity.