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Ultimate capacity of linear time-invariant bosonic channels with additive Gaussian noise

机译:具有加性高斯噪声的线性时不变玻色子通道的极限容量

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Fiber-optic communications axe moving to coherent detection in order to increase their spectral efficiency, i.e., their channel capacity per unit bandwidth. At power levels below the threshold for significant nonlinear effects, the channel model for such operation-a linear time-invariant filter followed by additive Gaussian noise-is one whose channel capacity is well known from Shannon's noisy channel coding theorem. The fiber channel, however, is really a bosonic channel, meaning that its ultimate classical information capacity must be determined from quantum-mechanical analysis, viz. from the Holevo-Schumacher-Westmoreland (HSW) theorem. Based on recent results establishing the HSW capacity of a linear (lossy or amplifying) channel with additive Gaussian noise, we provide a general continuous-time result, namely the HSW capacity of a linear time-invariant (LTI) bosonic channel with additive Gaussian noise arising from a thermal environment. In particular, we treat quasimonochromatic communication under an average power constraint through a channel comprised of a stable LTI filter that may be attenuating at all frequencies or amplifying at some frequencies and attenuating at others. Phase-insensitive additive Gaussian noise-associated with the continuous-time Langevin noise operator needed to preserve free-field commutator brackets-is included at the filter output. We compare the resulting spectral efficiencies with corresponding results for heterodyne and homodyne detection over the same channel to assess the increased spectral efficiency that might be realized with optimum quantum reception.
机译:光纤通信正在转向相干检测,以提高其频谱效率,即每单位带宽的信道容量。在低于显着非线性效应阈值的功率水平下,这种操作的信道模型(线性时不变滤波器后跟加性高斯噪声)是一种信道模型,其信道容量从香农的噪声信道编码定理中是众所周知的。但是,光纤通道实际上是一个玻色子通道,这意味着它的最终经典信息容量必须根据量子力学分析来确定。从Holevo-Schumacher-Westmoreland(HSW)定理得出。基于建立具有加性高斯噪声的线性(有损耗或放大)通道的HSW容量的最新结果,我们提供了一个一般的连续时间结果,即具有加性高斯噪声的线性时不变(LTI)玻色子通道的HSW容量由热环境引起。特别是,我们通过由稳定的LTI滤波器组成的信道在平均功率约束下对待准单色通信,该滤波器可能在所有频率处衰减或在某些频率处放大而在其他频率处衰减。与相位无关的加性高斯噪声与保持自由场换向器括号所需的连续时间兰格文噪声算子相关,包含在滤波器输出中。我们将所得频谱效率与在同一通道上进行外差和零差检测的相应结果进行比较,以评估最佳量子接收可能实现的频谱效率提高。

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