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Separability of entangled qutrits in noisy channels

机译:噪声通道中纠缠态四分位数的可分离性

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We present an analysis of noisy atomic channels involving qutrits. We choose a three-level atom with V configuration to be the qutrit state. Gell-Mann matrices and a generalized Bloch vector (eight-dimensional) are used to describe the qutrit density operator. We introduce quantum quasidistributions for qutrits that provide a simple description of entanglement. Studying the time evolution for the atomic variables we find the Kraus representation of spontaneous emission quantum channel (SE channel). Furthermore, we consider a generalized Werner state of two qutrits and investigate the separability condition in the presence of spontaneous emission noise. The influence of spontaneous emission on the separability of Werner states for qutrit and qubit states is compared.
机译:我们目前对涉及Qutrit的嘈杂原子通道进行分析。我们选择具有V构型的三能级原子作为qutrit状态。 Gell-Mann矩阵和广义Bloch向量(八维)用于描述qutrit密度算子。我们为量子态引入量子拟分布,提供了纠缠的简单描述。研究原子变量的时间演化,我们发现了自发发射量子通道(SE通道)的克劳斯表示。此外,我们考虑了两个Qutrit的广义Werner状态,并研究了存在自发发射噪声时的可分离性条件。比较了自然发射对Qutrit和Qubit态Werner态可分离性的影响。

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