首页> 外文期刊>The European physical journal, D. Atomic, molecular, and optical physics >Experimental detection of non-local correlations using a local measurement-based hierarchy on an NMR quantum processor
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Experimental detection of non-local correlations using a local measurement-based hierarchy on an NMR quantum processor

机译:使用基于NMR量子处理器的基于局部测量的层次结构的非局部相关性的实验检测

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The non-local nature of the correlations possessed by quantum systems may be revealed by experimental demonstrations of the violation of Bell-type inequalities. Recent work has placed bounds on the correlations that quantum systems can possess in an actual experiment. These bounds were limited to a composite quantum system comprising of a few lower-dimensional subsystems. In a more general approach, it has been shown that fewer body correlations can reveal the non-local nature of the correlations arising from a quantum mechanical description of nature. Such tests on the correlations can be transformed to a semi-definite program (SDP). This study reports the experimental implementation of a local measurement-based hierarchy on the nuclear magnetic resonance (NMR) hardware utilizing three nuclear spins as qubits. The protocol has been experimentally tested on tripartite pseudo-entangled states such as W state, GHZ state and a few graph states. In all the cases, the experimentally measured correlations were used to formulate the SDP, using linear constraints on the entries of the moment matrix. We observed that for each entangled state, the SDP failed to find a semi-definite positive moment matrix consistent with the experimental data. This implies that the observed correlations can not arise from local measurements on a separable state and are hence non-local in nature, and also confirms that the states being tested are indeed entangled.
机译:量子系统所拥有的相关性的非本地性质可以通过侵犯钟型不等式的实验示范来揭示。最近的工作已经放置了夸大量子系统在实际实验中拥有的相关性。这些界限仅限于包括一些低维子系统的复合量子系统。以一种更一般的方法,已经表明,更少的身体相关可以揭示由大量机械描述所产生的相关性的非本地性质。可以将相关性的这种测试转换为半定程序(SDP)。本研究报告了利用三个核旋转作为QGBits的核磁共振(NMR)硬件对核磁共振(NMR)硬件的实验实施。该协议已经在经过实验地测试了三方伪纠缠状态,例如W State,GHz状态和一些图表状态。在所有情况下,使用时刻矩阵的条目上的线性约束,使用实验测量的相关性来配制SDP。我们观察到,对于每个纠缠的状态,SDP未能找到与实验数据一致的半定向正片矩阵。这意味着观察到的相关性不能从可分离状态的局部测量中出现,因此在自然界中是非局部的,并且还证实所测试的状态确实纠缠了。

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