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Spin and Wind Directions II: A Bell State Quantum Model

机译:自旋和风向II:钟形量子模型

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摘要

In the first half of this two-part article (Aerts et al. in Found Sci. doi:10.1007/s10699-017-9528-9, ), we analyzed a cognitive psychology experiment where participants were asked to select pairs of directions that they considered to be the best example of Two Different Wind Directions, and showed that the data violate the CHSH version of Bell’s inequality, with same magnitude as in typical Bell-test experiments in physics. In this second part, we complete our analysis by presenting a symmetrized version of the experiment, still violating the CHSH inequality but now also obeying the marginal law, for which we provide a full quantum modeling in Hilbert space, using a singlet state and suitably chosen product measurements. We also address some of the criticisms that have been recently directed at experiments of this kind, according to which they would not highlight the presence of genuine forms of entanglement. We explain that these criticisms are based on a view of entanglement that is too restrictive, thus unable to capture all possible ways physical and conceptual entities can connect and form systems behaving as a whole. We also provide an example of a mechanical model showing that the violations of the marginal law and Bell inequalities are generally to be associated with different mechanisms.
机译:在这个由两部分组成的文章的上半部分(Aerts等人在Found Sci。doi:10.1007 / s10699-017-9528-9中),我们分析了一项认知心理学实验,其中要求参与者选择成对的方向被认为是“两个不同风向”的最佳示例,并表明该数据违反了贝尔不等式的CHSH版本,其幅度与典型的物理贝尔测试实验相同。在第二部分中,我们通过给出对​​称的实验版本来完成分析,该实验仍然违反了CHSH不等式,但现在也遵循了边际定律,为此我们在希尔伯特空间中提供了全量子模型,使用单重态并且选择了合适的条件产品尺寸。我们还解决了最近针对此类实验的一些批评,根据这些批评,他们不会强调存在真正的纠缠形式。我们解释说,这些批评是基于一种过于严格的纠缠观点,因此无法捕获物理和概念实体可以连接并形成整体行为的所有可能方式。我们还提供了一个机械模型示例,该模型表明违反边际定律和贝尔不等式通常与不同的机制相关。

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