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Conjunction and negation of natural concepts: A quantum-theoretic modeling

机译:自然概念的衔接与否定:量子理论建模

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We perform two experiments with the aim to investigate the effects of negation on the combination of natural concepts. In the first experiment, we test the membership weights of a list of exemplars with respect to two concepts, e.g., Fruits and Vegetables, and their conjunction Fruits And Vegetables. In the second experiment, we test the membership weights of the same list of exemplars with respect to the same two concepts, but negating the second, e.g., Fruits and Not Vegetables, and again their conjunction Fruits And Not Vegetables. The collected data confirm existing results on conceptual combination, namely, they show dramatic deviations from the predictions of classical (fuzzy set) logic and probability theory. More precisely, they exhibit conceptual vagueness, gradeness of membership, overextension and double overextension of membership weights with respect to the given conjunctions. Then, we show that the quantum probability model in Fock space recently elaborated to model Hampton's data on concept conjunction (Hampton, 1988a) and disjunction (Hampton, 1988b) faithfully accords with the collected data. Our quantum-theoretic modeling enables to describe these non-classical effects in terms of genuine quantum aspects, namely 'contextuality', 'superposition', 'interference' and 'emergence'. The obtained results confirm and strengthen the analysis in Aerts (2009a) and Sozzo (2014) on the identification of quantum structures in experiments on conceptual vagueness. And, more, they can be inserted within the general research on the identification of quantum structures in cognitive processes. (C) 2015 Elsevier Inc. All rights reserved.
机译:我们进行了两个实验,目的是研究否定对自然概念的组合的影响。在第一个实验中,我们针对两个概念(例如,水果和蔬菜,以及它们与水果和蔬菜的结合),测试了一个示例列表的成员权重。在第二个实验中,我们针对相同的两个概念测试了相同示例列表的成员权重,但否定了第二个示例,例如,``水果和非蔬菜'',以及它们的结合``水果与非蔬菜''。收集到的数据证实了现有概念组合的结果,即它们显示出与经典(模糊集)逻辑和概率理论的预测相差甚远。更确切地说,相对于给定的连词,它们表现出概念上的模糊性,隶属度,过度扩展和隶属权重的双重过度扩展。然后,我们表明,最近在Fock空间中建立的量子概率模型可以对汉普顿关于概念合(Hampton,1988a)和分离(Hampton,1988b)的数据进行建模,从而与收集到的数据完全相符。我们的量子理论模型能够用真实的量子方面来描述这些非经典效应,即“上下文性”,“叠加”,“干扰”和“出现”。获得的结果证实并加强了Aerts(2009a)和Sozzo(2014)关于概念模糊性实验中量子结构鉴定的分析。而且,它们还可以插入到有关认知过程中量子结构识别的一般研究中。 (C)2015 Elsevier Inc.保留所有权利。

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