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Capacity of optical communications over a lossy bosonic channel with a receiver employing the most general coherent electro-optic feedback control

机译:利用最通用的相干电光反馈控制的接收器在有损耗的玻色子通道上进行光通信的能力

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摘要

We study the problem of designing optical receivers to discriminate between multiple coherent states using coherent processing receivers—i.e., one that uses arbitrary coherent feedback control and quantum-noise-limited direct detection—which was shown by Dolinar to achieve the minimum error probability in discriminating any two coherent states. We first derive and reinterpret Dolinar's binary-hypothesis minimum-probability-of-error receiver as the one that optimizes the information efficiency at each time instant, based on recursive Bayesian updates within the receiver. Using this viewpoint, we propose a natural generalization of Dolinar's receiver design to discriminate M coherent states, each of which could now be a codeword, i.e., a sequence of N coherent states, each drawn from a modulation alphabet. We analyze the channel capacity of the pure-loss optical channel with a general coherent-processing receiver in the low-photon number regime and compare it with the capacity achievable with direct detection and the Holevo limit (achieving the latter would require a quantum joint-detection receiver). We show compelling evidence that despite the optimal performance of Dolinar's receiver for the binary coherent-state hypothesis test (either in error probability or mutual information), the asymptotic communication rate achievable by such a coherent-processing receiver is only as good as direct detection. This suggests that in the infinitely long codeword limit, all potential benefits of coherent processing at the receiver can be obtained by designing a good code and direct detection, with no feedback within the receiver.
机译:我们研究了设计光接收器以使用相干处理接收器(即使用任意相干反馈控制和量子噪声限制直接检测的一种)来区分多个相干状态的问题,Dolinar证明了这一点,以便在区分时获得最小的错误概率任何两个相干状态。我们首先根据接收器内的递归贝叶斯更新,推导并重新解释Dolinar的二进制假设错误最小概率接收器,该接收器可以在每个时刻优化信息效率。使用这种观点,我们提出了对Dolinar接收机设计的自然概括,以区分M个相干态,每个相干态现在可以是一个码字,即N个相干态的序列,每个均来自调制字母。我们在低光子数状态下使用一般相干处理接收机分析了纯损耗光信道的信道容量,并将其与直接检测和Holevo极限可获得的容量进行比较(要达到后者,则需要量子联合,检测接收器)。我们显示出令人信服的证据,尽管Dolinar接收机在二进制相干状态假设测试中具有最佳性能(在错误概率或互信息中),但这种相干处理接收机所能达到的渐近通信速率仅与直接检测一样好。这表明在无限长的码字限制下,可以通过设计一个好的代码和直接检测来获得接收机处相干处理的所有潜在好处,而接收机内没有反馈。

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