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Quantum channel capacity for OAM-based free-space optical communications

机译:基于OAM的自由空间光通信的量子信道容量

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We study the channel capacity for orbital angular momentum (OAM) based quantum free-space optical communications. Inspired by recent demonstrations for OAM-based single-photon communication, we construct the quantum density operator in matrix form, based on OAM eigenkets, and determine the quantum channel model suitable for study of the quantum communication over atmospheric turbulence channels. The quantum channel model is derived from OAM eigenkets transition probabilities. By using this model we determine the OAM quantum channel capacity in the presence of atmospheric turbulence. The proposed quantum channel model is of high importance for future study of quantum error correction coding to extend the transmission distance and data rate of free-space quantum communications.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:我们研究基于轨道角动量(OAM)的量子自由空间光通信的信道容量。受最近基于OAM的单光子通信演示的启发,我们基于OAM特征元,以矩阵形式构造量子密度算符,并确定适合研究大气湍流通道上的量子通信的量子通道模型。量子信道模型是从OAM特征基转移概率得出的。通过使用此模型,我们可以确定存在大气湍流时的OAM量子通道容量。拟议的量子信道模型对于量子纠错编码的未来研究具有重要意义,以延长自由空间量子通信的传输距离和数据速率。©(2012)COPYRIGHT光电仪器工程师协会(SPIE)。摘要的下载仅允许个人使用。

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