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Quantum contextual phenomena observed in single-neutron interferometer experiments

机译:单中子干涉仪实验中观察到量子上下文现象

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Neutron optical experiments are presented, which exhibit quantum contextual phenomena. Entanglement is achieved not between particles, but between degrees of freedom, in this case, for a single-particle. Appropriate combinations of the direction of spin analysis and the position of the phase shifter allow an experimental verification of the violation of a Belllike inequality. Our experiments manifest the fact that manipulation of the wavefunction in one Hilbert space influences the result of the measurement in the other Hilbert space: manipulation without touch! Next, we report another experiment which exhibits other peculiarity of quantum contextuality, e.g., originally intended to show a Kochen-Specker-like phenomenon. We have introduced inequalities for quantitative analysis of the experiments. The value obtained in the experiments clearly showed violations of prediction by non-contextual theory. Finally, we have accomplished a tomographic determination of entangled quantum state in single-neutrons. There,characteristics of the Bell-sate are confirmed: four poles for the real part of the density matrix are clearly seen.
机译:提出中子光学实验,其表现出量子上下文现象。在粒子之间而不是在这种情况下在颗粒之间实现缠结,而是用于单粒子的自由度。旋转分析方向的适当组合和相移器的位置允许实验验证违反贝尔般的不平等。我们的实验表明,在一个希尔伯特空间中操纵挥动器的操纵会影响其他希尔伯特空间中的测量结果:无触摸的操作!接下来,我们报告了另一个实验,该实验表现出量子上下情节的其他特殊性,例如,最初旨在展示Kochen-Specker样现象。我们引入了对实验的定量分析的不等式。在实验中获得的值清楚地表现出违反非语境理论的预测。最后,我们已经完成了单中子中缠绕量子状态的断层测定。在那里,确认了钟声的特征:清楚地看到了四个密度矩阵的真实部分的极点。

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