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Challenging the classical notion of time in cognition: a quantum perspective

机译:挑战认知中的经典时间观念:量子观点

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摘要

All mental representations change with time. A baseline intuition is that mental representations have specific values at different time points, which may be more or less accessible, depending on noise, forgetting processes, etc. We present a radical alternative, motivated by recent research using the mathematics from quantum theory for cognitive modelling. Such cognitive models raise the possibility that certain possibilities or events may be incompatible, so that perfect knowledge of one necessitates uncertainty for the others. In the context of time-dependence, in physics, this issue is explored with the so-called temporal Bell (TB) or Leggett–Garg inequalities. We consider in detail the theoretical and empirical challenges involved in exploring the TB inequalities in the context of cognitive systems. One interesting conclusion is that we believe the study of the TB inequalities to be empirically more constrained in psychology than in physics. Specifically, we show how the TB inequalities, as applied to cognitive systems, can be derived from two simple assumptions: cognitive realism and cognitive completeness. We discuss possible implications of putative violations of the TB inequalities for cognitive models and our understanding of time in cognition in general. Overall, this paper provides a surprising, novel direction in relation to how time should be conceptualized in cognition.
机译:所有的心理表现都会随着时间而改变。基线直觉是,心理表征在不同的时间点具有特定的值,取决于噪声,遗忘过程等,这些时间值或多或少可以访问。我们提出了一种根本的替代方法,该方法是受最近使用量子理论中的数学知识进行认知研究的启发造型。这种认知模型提高了某些可能性或事件可能不兼容的可能性,因此,对一种可能性的完全了解会为另一种可能性或事件带来不确定性。在时间相关的上下文中,在物理学中,这个问题是通过所谓的时间钟(TB)或莱格特-盖尔不等式来探讨的。我们详细考虑了在认知系统的背景下探索结核病不平等所涉及的理论和经验挑战。一个有趣的结论是,我们认为对结核病不平等现象的研究在心理学上比在物理上受到更多的限制。具体而言,我们展示了如何从两个简单的假设中得出应用于认知系统的结核病不平等现象:认知现实主义和认知完整性。我们讨论了公认的结核病不平等违反行为可能对认知模型的影响,以及我们对认知时间的总体理解。总体而言,本文提供了关于如何在认知中概念化时间的令人惊讶的新颖方向。

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