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Separation of conditions as a prerequisite for quantum theory

机译:将条件分离为量子理论的先决条件

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We introduce the notion of "separation of conditions" meaning that a description of statistical data obtained from experiments, performed under a set of different conditions, allows for a decomposition such that each partial description depends on mutually exclusive subsets of these conditions. Descriptions that allow a separation of conditions are shown to entail the basic mathematical framework of quantum theory. The Stern-Gerlach and the Einstein-Podolsky-Rosen-Bohm experiment with three, respectively nine possible outcomes are used to illustrate how the separation of conditions can be used to construct their quantum theoretical descriptions. It is shown that the mathematical structure of separated descriptions implies that, under certain restrictions, the time evolution of the data can be described by the von Neumann/Schrodinger equation. (C) 2019 The Authors. Published by Elsevier Inc.
机译:我们介绍了“条件分离”的概念,这意味着在一组不同条件下执行的实验中获得的统计数据允许分解,使得每个部分描述取决于这些条件的互斥子集。 允许分离条件的说明显示为量子理论的基本数学框架。 Stern-Gerlach和Einstein-Podolsky-Rosen-Bohm实验分别用于分别九种可能的结果来说明条件的分离方式如何用于构建其量子理论描述。 结果表明,分离描述的数学结构意味着,在某些限制下,数据的时间演化可以由von neumann / schrodinger方程描述。 (c)2019年作者。 elsevier公司发布

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