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Effect of the Spin-Orbit Interaction (Heisenberg XYZ Model) on Partial Entangled Quantum Network

机译:自旋轨道相互作用(Heisenberg XYZ模型)对部分纠缠量子网络的影响

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Dzyaloshiniskii-Moriya (DM) interaction in three directions (Dx, Dy and Dz) is used to generate entangled network from partially entangled states in the presence of the spin-orbit coupling. The effect of the spin coupling on the entanglement between any two nodes of the network is investigated. The entanglement is quantified using Woottores concurrence method. It is shown that the entanglement decays as the coupling increases. For larger values of the spin coupling, the entanglement oscillates within finite bounds. For the initially entangled channels, the upper bound does not exceed its initial value, whereas the entanglement reaches its maximum value for the channels generated via indirect interaction.
机译:在自旋轨道耦合的存在下,Dzyaloshiniskii-Moriya(DM)在三个方向(Dx,Dy和Dz)上的相互作用用于从部分纠缠状态生成纠缠网络。研究了自旋耦合对网络任意两个节点之间纠缠的影响。使用Woottores并发方法对纠缠进行量化。结果表明,纠缠随着耦合的增加而衰减。对于更大的自旋耦合值,纠缠在有限范围内振荡。对于最初纠缠的通道,上限不超过其初始值,而对于通过间接交互生成的通道,纠缠达到最大值。

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