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Role of Initial Entanglement and Non-Gaussianity in the Decoherence of Photon-Number Entangled States Evolving in a Noisy Channel

机译:初始纠缠和非高斯性在光通道中纠缠的光子数纠缠态退相干中的作用

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摘要

We address the degradation of continuous variable (CV) entanglement in a noisy channel focusing on the set of photon-number entangled states. We exploit several separability criteria and compare the resulting separation times with the value of non-Gaussianity at any time, thus showing that in the low-temperature regime: (ⅰ) non-Gaussianity is a bound for the relative entropy of entanglement and (ⅱ) Simon's criterion provides a reliable estimate of the separation time also for non-Gaussian states. We provide several evidences supporting the conjecture that Gaussian entanglement is the most robust against noise, i.e., it survives longer than a non-Gaussian one, and that this may be a general feature for CV systems in Markovian channels.
机译:我们解决了集中在光子数纠缠态集上的嘈杂通道中连续变量(CV)纠缠的退化。我们利用几个可分离性标准,并随时将分离时间与非高斯性的值进行比较,从而表明在低温状态下:(ⅰ)非高斯性是纠缠相对熵的约束,而(ⅱ )Simon的准则也为非高斯状态提供了可靠的分离时间估计。我们提供了一些证据支持高斯纠缠对噪声最强的猜测,即它比非高斯纠缠的生存时间更长,这可能是马尔可夫信道中CV系统的普遍特征。

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