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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Robustness of quantum communication based on a decoherence-free subspace using a counter-propagating weak coherent light pulse
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Robustness of quantum communication based on a decoherence-free subspace using a counter-propagating weak coherent light pulse

机译:基于无相干子空间的,使用反向传播的弱相干光脉冲的量子通信的鲁棒性

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摘要

We study distribution schemes for a polarization entangled photon pair based on a decoherence-free subspace over lossy quantum channels and propose an efficient scheme that is robust against not only collective phase noises but also general collective noises for two qubits. While the proposed scheme employs two photons to build the decoherence-free subspace, the success probability is proportional to the channel transmittance of a single photon with the aid of a counter-propagating weak coherent light pulse. The key ingredient in the scheme is found to be the reciprocity of the channel. The proposed scheme shares the rest of the properties with the previously proposed schemes; i.e., it can be realized by linear optical elements and it is robust against the fluctuations in the optical circuits used by the two parties.
机译:我们研究了基于有损量子信道上无退相干子空间的偏振纠缠光子对的分配方案,并提出了一种有效的方案,该方案不仅可以抵抗集体相位噪声,而且还可以抵抗两个量子位的一般集体噪声。虽然所提出的方案使用两个光子来构建无退相干子空间,但借助反向传播的弱相干光脉冲,成功概率与单个光子的通道透射率成正比。该方案中的关键要素是渠道的互惠性。拟议的方案与先前提出的方案具有其他性质;即,它可以通过线性光学元件来实现,并且对于由两方使用的光学电路的波动是鲁棒的。

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