Dynamics of the entanglement over noisy quantum networks

A. Abdel‐Aty, Nordin Zakaria, M. Mabrok
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引用次数: 3

Abstract

In this paper, the effect of homogeneous and non-homogeneous magnetic fields as an external noisy on the entanglement dynamics over partial entangled state quantum network is studied. The Dzyaloshiniskii-Moriya (DM) interaction is used to generate entangled network from partially entangled states in the presence of the spin-orbit coupling. The entanglement between any two nodes is quantified using Wootter concurrence. The effect of homogeneous and non-homogeneous magnetic field in presence and absence of the spin coupling on the entanglement between any two nodes of the network is investigated. The results show that the homogeneous magnetic field has no effect on the entanglement without the presence of the spin-orbit interaction. The non-homogeneous magnetic field has a strong impact on the entanglement either with or without spin-orbit couplings. For initially entangled channels, the upper bound does not exceed its initial value, whereas for the channels generated via indirect interaction, the entanglement reaches its maximum value.
噪声量子网络上的纠缠动力学
本文研究了均匀磁场和非均匀磁场作为外部噪声对部分纠缠态量子网络纠缠动力学的影响。利用Dzyaloshiniskii-Moriya (DM)相互作用,在自旋-轨道耦合存在的情况下,从部分纠缠态生成纠缠网络。使用Wootter并发对任意两个节点之间的纠缠进行量化。研究了存在和不存在自旋耦合时均匀和非均匀磁场对网络任意两个节点之间纠缠度的影响。结果表明,在不存在自旋轨道相互作用的情况下,均匀磁场对纠缠态没有影响。不论是否有自旋轨道耦合,非均匀磁场对纠缠态都有很大的影响。对于最初纠缠的信道,上界不超过其初始值,而对于间接相互作用产生的信道,纠缠达到最大值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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