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Parametric source of two-photon states with a tunable degree of entanglement and mixing: Experimental preparation of Werner states and maximally entangled mixed states

机译:具有可调纠缠度和混合度的双光子态的参数源:Werner态和最大纠缠混合态的实验准备

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摘要

A parametric source of polarization-entangled photon pairs with striking spatial characteristics is reported. The distribution of the output electromagnetic k modes excited by spontaneous parametric down-conversion and coupled to the output detectors can be very broad. Using these states realized over a full entanglement ring output distribution, the nonlocal properties of the generated entanglement have been tested by standard Bell measurements and by Ou-Mandel interferometry. A "mode-patchwork" technique based on the quantum superposition principle is adopted to synthesize in a straightforward and reliable way any kind of mixed state, of large conceptual and technological interest in modern quantum information. Tunable Werner states and maximally entangled mixed states have indeed been created by this technique and investigated by quantum tomography. A study of the entropic and nonlocal properties of these states has been undertaken experimentally and theoretically, by a unifying variational approach.
机译:报告了具有明显空间特征的偏振纠缠光子对的参数源。由自发参数下变频激发并耦合到输出检测器的输出电磁k模式的分布可能非常广泛。使用在整个纠缠环输出分布上实现的这些状态,已通过标准Bell测量和Ou-Mandel干涉测量法测试了所产生纠缠的非局部性质。采用基于量子叠加原理的“模式拼凑”技术,以直接,可靠的方式合成了现代量子信息中概念和技术方面具有重大意义的任何混合状态。可调Werner态和最大纠缠混合态确实是通过这种技术创建的,并通过量子层析成像技术进行了研究。通过统一的变分方法,在实验和理论上对这些状态的熵和非局部性质进行了研究。

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