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Exploring the Limits of Quantum Nonlocality with Entangled Photons

机译:纠缠光子探索量子非局域性的极限

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Nonlocality is arguably among the most counterintuitive phenomena predicted by quantum theory. In recent years, the development of an abstract theory of nonlocality has brought a much deeper understanding of the subject, revealing a rich and complex phenomenon. In the current work, we present a systematic experimental exploration of the limits of quantum nonlocality. Using a versatile and high-fidelity source of pairs of polarization-entangled photons, we explore the boundary of quantum correlations, demonstrate the counterintuitive effect of more nonlocality with less entanglement, present the most nonlocal correlations ever reported, and achieve quantum correlations requiring the use of complex qubits. All of our results are in remarkable agreement with quantum predictions, and thus represent a thorough test of quantum theory. Pursuing such an approach is nevertheless highly desirable, as any deviation may provide evidence of new physics beyond the quantum model.
机译:非局部性可以说是量子理论预测的最违反直觉的现象之一。近年来,非局域性抽象理论的发展带来了对该主题的更深刻的理解,揭示了丰富而复杂的现象。在当前的工作中,我们对量子非局限性进行了系统的实验探索。我们使用极化纠缠光子对的通用且高保真度的源,探索了量子相关的边界,证明了更多非局部性和较少纠缠的反直觉效应,展示了有史以来报道的最多非局部性相关性,并实现了需要使用的量子相关性复杂的量子位。我们所有的结果都与量子预测非常吻合,因此代表了对量子理论的彻底检验。尽管如此,仍非常希望采用这种方法,因为任何偏差都可能提供量子模型以外的新物理学的证据。

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