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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:噪声通道中高斯和非澳大利亚人光子数纠缠态的消相干

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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:我们考虑了光子数纠缠态(PNES),并使用不同的可分离性标准和最近提出的非高斯测量方法作为关键工具,研究了它们在嘈杂通道中纠缠的退化。通过比较该类中的高斯状态和非高斯状态,我们收集了一些证据,表明高斯状态对噪声具有最大的鲁棒性,即在最大时间内发生了纠缠的完全损失。然而,对于非高斯态而言,对于这些态的足够高的能量而言,该间隙可以忽略不计。

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