Some Examples of Contextuality in Physics: Implications to Quantum Cognition

J. A. Barros, G. Oas
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引用次数: 17

Abstract

Contextuality, the impossibility of assigning a single random variable to represent the outcomes of the same measurement procedure under different experimental conditions, is a central aspect of quantum mechanics. Thus defined, it appears in well-known cases in quantum mechanics, such as the double-slit experiment, the Bell-EPR experiment, and the Kochen-Specker theorem. Here we examine contextuality in such cases, and discuss how each of them bring different conceptual issues when applied to quantum cognition. We then focus on the shortcomings of using quantum probabilities to describe social systems, and explain how negative quasi-probability distributions may address such limitations.
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物理学中情境性的一些例子:对量子认知的启示
上下文性,即不可能用一个随机变量来表示不同实验条件下相同测量过程的结果,是量子力学的一个核心方面。如此定义,它出现在量子力学中众所周知的案例中,如双缝实验、贝尔- epr实验和柯钦-斯佩克定理。在这里,我们将研究这些情况下的情境性,并讨论它们在应用于量子认知时如何带来不同的概念问题。然后,我们将重点放在使用量子概率来描述社会系统的缺点上,并解释负准概率分布如何解决这些限制。
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