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首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Effect of intrinsic decoherence on entanglement of three polar molecules with two-dimensional rotation
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Effect of intrinsic decoherence on entanglement of three polar molecules with two-dimensional rotation

机译:内在粘膜对三个极性分子缠结的影响二维旋转

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The dynamic entanglement of three polar molecules with two-dimensional rotations is investigated under the influence of an electric field and intrinsic decoherence. The parameters of the electric field, such as strength and orientation, are tuned to tailor the rotational properties of the molecules. Due to the two-dimensional rotation and its dipole-dipole interaction, a mechanism of two-molecule transition occurs and leads to specific quantum states in the tripartite system. The components of the states are analyzed by varying the symmetry of the molecular arrangement. We evaluate the negativity to probe the entanglement characteristics of the system. The negativity shows distinct oscillating features for initial GHZ, W, and inverted-W states. These features are suppressed and eventually smoothed in the presence of intrinsic decoherence. We further analyze the contribution of the quantum states to the entanglement. Due to specific selection rules, only two of the states are found to dominate the evolution of the negativity. Among the three cases, the system based on the inverted-W state evolves with the lowest loss of entanglement.
机译:在电场和固有堵塞的影响下,研究了三个极性分子具有二维旋转的动态缠结。调谐电场的参数,例如强度和方向,以定制分子的旋转性质。由于二维旋转及其偶极 - 偶极相互作用,发生两分子转变的机制,并在三方系统中导致特定量子状态。通过改变分子布置的对称性来分析各种组分。我们评估了探测系统缠结特性的消极性。消极性显示出用于初始GHz,W和倒置的不同的振荡特征。这些特征被抑制,最终在内在的脱机的存在下平滑。我们进一步分析了量子国家对纠缠的贡献。由于具体的选择规则,发现两个国家只能占据消极性的演变。在三种情况下,基于倒立的系统的系统随着纠缠的最低损失而发展。

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