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Quantum theory and human perception of the macro-world

机译:量子理论与人类对宏观世界的认识

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We investigate the question of ‘why customary macroscopic entities appear to us humans as they do, i.e., as bounded entities occupying space and persisting through time’, starting from our knowledge of quantum theory, how it affects the behavior of such customary macroscopic entities, and how it influences our perception of them. For this purpose, we approach the question from three perspectives. Firstly, we look at the situation from the standard quantum angle, more specifically the de Broglie wavelength analysis of the behavior of macroscopic entities, indicate how a problem with spin and identity arises, and illustrate how both play a fundamental role in well-established experimental quantum-macroscopical phenomena, such as Bose-Einstein condensates. Secondly, we analyze how the question is influenced by our result in axiomatic quantum theory, which proves that standard quantum theory is structurally incapable of describing separated entities. Thirdly, we put forward our new ‘conceptual quantum interpretation’, including a highly detailed reformulation of the question to confront the new insights and views that arise with the foregoing analysis. At the end of the final section, a nuanced answer is given that can be summarized as follows. The specific and very classical perception of human seeing—light as a geometric theory—and human touching—only ruled by Pauli's exclusion principle—plays a role in our perception of macroscopic entities as ontologically stable entities in space. To ascertain quantum behavior in such macroscopic entities, we will need measuring apparatuses capable of its detection. Future experimental research will have to show if sharp quantum effects—as they occur in smaller entities—appear to be ontological aspects of customary macroscopic entities. It remains a possibility that standard quantum theory is an incomplete theory, and hence incapable of coping ultimately with separated entities, meaning that a more general theory will be needed.
机译:我们从量子理论的知识出发,研究了“为什么惯常的宏观实体在人类中像人类一样出现,即,有界实体占据了空间并在时间上持续存在”的问题,因此我们从量子理论的知识开始,它如何影响此类惯常的宏观实体的行为,以及它如何影响我们对他们的看法。为此,我们从三个角度探讨这个问题。首先,我们从标准量子角度来看情况,更具体地说,是对宏观实体行为的de Broglie波长分析,指出自旋和同一性的问题是如何产生的,并说明两者如何在完善的实验中起基本作用量子宏观现象,例如玻色-爱因斯坦凝聚物。其次,我们分析了公理量子理论中结果如何影响该问题,这证明了标准量子理论在结构上无法描述分离的实体。第三,我们提出了新的“概念量子解释”,包括对问题的高度详细的表述,以应对上述分析中出现的新见解和观点。在最后一节的末尾,给出了一个细微的答案,可以总结如下。仅根据保利的排除原则,人类对视觉的特定和非常经典的感知(作为几何理论的光)和人类的触摸在我们将宏观实体视为空间中本体稳定的实体的感知中发挥了作用。为了确定这种宏观实体中的量子行为,我们将需要能够对其进行检测的测量设备。未来的实验研究将不得不证明尖锐的量子效应(如它们在较小的实体中发生的)是否似乎是惯常的宏观实体的本体论方面。标准量子理论仍然是不完整的理论,因此最终无法应对分离的实体,这仍然存在可能性,这意味着将需要更通用的理论。

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