For space-based laser communications, when the mean photon number per received optical pulse is much smaller than one, there is a large gap between communications capacity achievable with a receiver that performs individual pulse-by-pulse detection, and the quantum-optimal "joint-detection receiver" that acts collectively on long codeword-blocks of modulated pulses; an effect often termed "superadditive capacity". In this paper, we consider the simplest scenario where a large superadditive capacity is known: a pure-loss channel with a coherent-state binary phase-shift keyed (BPSK) modulation. The two BPSK states can be mapped conceptually to two non-orthogonal states of a qubit, described by an inner product that is a function of the mean photon number per pulse. Using this map, we derive an explicit construction of the quantum circuit of a joint-detection receiver based on a recent idea of "belief-propagation with quantum messages" (BPQM) (arXiv:1607.04833). We quantify its performance improvement over the Dolinar receiver that performs optimal pulse-by-pulse detection, which represents the best "classical" approach. We analyze the scheme rigorously and show that it achieves the quantum limit of minimum average error probability in discriminating 8 (BPSK) codewords of a length-5 binary linear code with a tree factor graph. Our result suggests that a BPQM-receiver might attain the Holevo capacity of this BPSK-modulated pure-loss channel. Moreover, our receiver circuit provides an alternative proposal for a quantum supremacy experiment, targeted at a specific application that can potentially be implemented on a small, special-purpose, photonic quantum computer capable of performing cat-basis universal qubit logic.
翻译:对于天基激光通信,当每接收到的光脉脉冲平均光子数大大小于一个时,可以实现的通信能力与以下两个条件之间有很大差距:一是进行个人脉冲对脉冲检测的接收器,二是量子优化“联合检测接收器”,在调制脉冲的长代数块上共同运行;一是常称为“超添加能力”的效应。在本文中,我们认为最简单的情景是,已知一个巨大的超添加能力:一个纯损失频道,配有一致的州级双向双向级键式键式调制(BPSK)调制调制。两个BPS-5频道在概念上可以向两个非脉冲状态的量子检测器进行定位,由内产产品描述,这是每脉冲脉冲平均光量数的函数函数。我们根据最近的一个想法,即“用量子电量电流信号-对量电流流流流流流(BBPQM),(arXiv:160-4833) 。我们量化其性性性变的性性能改进,由DolinK接受的直径接收器最起码的直径测测测算方法显示一个最精确的直径直径直径直径直径直径的计算方法,可以显示一个我们最精确的脉冲的脉冲的直径直径直径直径直径直径直径直路路路。