论文标题
单个实验中的非局部性,转向和量子状态断层扫描
Nonlocality, steering and quantum state tomography in a single experiment
论文作者
论文摘要
我们研究量子状态断层扫描的范式测量,即互无偏见的碱基和对称信息完整的测量值,可用于证明量子相关性。为此,我们确定了一个简单而噪声的相关见证人,可以根据层析成像实验中获得的结果统计数据来评估纠缠检测,转向和非局部性。这使我们能够对纠缠的Qutrits进行状态层析成像,这是对爱因斯坦 - 波多尔斯基 - 罗森转向的测试和贝尔不等式测试的测试。我们还调查了量子相关性和在不同情况下的量子相关性和子集之间的权衡以及纠缠的量化。最后,我们执行了一个光子学实验,在这些实验中,我们在这些灵活的假设下证明了量子相关性,即双方都信任,一个政党不受信任,双方不受信任。
We investigate whether paradigmatic measurements for quantum state tomography, namely mutually unbiased bases and symmetric informationally complete measurements, can be employed to certify quantum correlations. For this purpose, we identify a simple and noise-robust correlation witness for entanglement detection, steering and nonlocality that can be evaluated based on the outcome statistics obtained in the tomography experiment. This allows us to perform state tomography on entangled qutrits, a test of Einstein-Podolsky-Rosen steering and a Bell inequality test, all within a single experiment. We also investigate the trade-off between quantum correlations and subsets of tomographically complete measurements as well as the quantification of entanglement in the different scenarios. Finally, we perform a photonics experiment in which we demonstrate quantum correlations under these flexible assumptions, namely with both parties trusted, one party untrusted and both parties untrusted.