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Measuring entanglement and entanglement measures

机译:测量纠缠和纠缠措施

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Summary form only given. Entangled states of multi-particle systems are arguably the quintessential feature of quantum mechanics. In addition to their central role in discussions of non-local quantum correlations, they form the basis of quantum information, and enable such phenomena as quantum cryptography, quantum dense coding, teleportation, and quantum computation. Via the process of spontaneous parametric downconversion in a pair of nonlinear crystals, it is now possible to produce, with high efficiency, pairs of photons entangled in their polarisation degree of freedom. We can also control both the extent of entanglement and the purity of the state. Density matrices for states generated by this method, and measured using tomographic techniques, are shown.
机译:仅提供摘要表格。多粒子系统的纠缠态可以说是量子力学的典型特征。除了它们在讨论非局部量子相关性中的核心作用外,它们还构成了量子信息的基础,并实现了诸如量子密码术,量子密集编码,隐形传态和量子计算之类的现象。通过一对非线性晶体中的自发参数下转换过程,现在可以高效地产生纠缠在其偏振自由度中的成对光子。我们还可以控制纠缠的程度和状态的纯度。显示了通过此方法生成并使用断层扫描技术测量的状态的密度矩阵。

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