论文标题

相关的计算和计算相关性

Correlations for computation and computation for correlations

论文作者

Demirel, Bülent, Weng, Weikai, Thalacker, Christopher, Hoban, Matty, Barz, Stefanie

论文摘要

量子相关性是量子物理基础的核心,并构成了量子技术的基础。在这里,我们的目标是连接量子相关性和计算:使用量子相关用作计算的资源,反之亦然,使用计算来测试量子相关。我们得出了测试量子状态计算布尔函数的能力的铃铛型不平等,并使用4光片Greenberger-Horne-Zeilinger(GHz)状态实验研究它们。此外,我们展示了如何使用生成的状态专门计算布尔函数 - 可用于测试和验证基本量子状态的非经典性。量子相关性和此处显示的可计算性之间的连接具有量子技术中的应用,对于通过分布式多部分量子状态进行的测量进行的网络计算非常重要。

Quantum correlations are central to the foundations of quantum physics and form the basis of quantum technologies. Here, our goal is to connect quantum correlations and computation: using quantum correlations as a resource for computation - and vice versa, using computation to test quantum correlations. We derive Bell-type inequalities that test the capacity of quantum states for computing Boolean functions and experimentally investigate them using 4-photon Greenberger-Horne-Zeilinger (GHZ) states. Further, we show how the generated states can be used to specifically compute Boolean functions - which can be used to test and verify the non-classicality of the underlying quantum states. The connection between quantum correlation and computability shown here has applications in quantum technologies, and is important for networked computing being performed by measurements on distributed multipartite quantum states.

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