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首页> 外文期刊>International Journal of Quantum Information >DECOHERENCE OF GAUSSIAN AND NONGAUSSIAN PHOTON-NUMBER ENTANGLED STATES IN A NOISY CHANNEL
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DECOHERENCE OF GAUSSIAN AND NONGAUSSIAN PHOTON-NUMBER ENTANGLED STATES IN A NOISY CHANNEL

机译:高斯和Nongaussian光子号码在嘈杂的频道中纠缠在一起的状态

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摘要

We consider photon-number entangled states (PNES) and study the degradation of their entanglement in a noisy channel, using different separability criteria and a recently proposed measure of nonGaussianity as key tools. Upon comparing Gaussian and nonGaussian states within the class, we collect some evidence that Gaussian states are maximally robust against noise, i.e. the complete loss of entanglement occurs in maximal time. However, the gap with respect to nonGaussian states is negligible for sufficiently high energy of the states.
机译:我们考虑光子数纠缠状态(PNES),并在嘈杂的渠道中研究其纠缠的纠纷,利用不同的可分离标准和最近提出的Nongaussianity衡量作为关键工具。在比较课堂内的高斯和非洲武器国家时,我们收集了一些证据,即高斯国家对噪声最大鲁棒,即在最大时间发生完全纠缠的纠缠。然而,对于州的足够高能量而言,相对于尼古斯国家的差距可以忽略不计。

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