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Time, the Arrow of Time, and Quantum Mechanics

机译:时间,时间之箭和量子力学

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It is brought forward that viable theories of the physical world that have no variable at all that can play the role of time, do not exist; some notion of time is one of the very first ingredients a candidate theory should possess. Almost by definition, time has an arrow. In contrast, time reversibility, or even the possibility to run the equations of motion backwards in time, is not at all a primary requirement. This means that the direction of the arrow of time may well be uniquely defined in the theory, even locally. It is explained that a rigorous definition of time, as well as a formulation of the causality and locality concepts, can only be given when one has a model for the physical phenomena described. The only viable causality condition is one that is symmetric under time reversal. We explain these statements in terms of the authora??s favoured deterministic cellular automaton interpretation of quantum mechanics, also to be referred to as 'vector space analysis', and expand on these ideas. It is also summarised how our more rigorous causality condition affects Bella??s theorems. What distinguishes quantum systems from classical ones is our fundamental inability to control the microscopic details of the initial state when phenomena are studied in the light of some theoretical model.
机译:有人提出,不存在任何可以起时间作用的变量的物质世界可行的理论不存在。时间概念是候选理论应具备的最重要的要素之一。根据定义,时间几乎有箭头。相比之下,时间可逆性,甚至是向后运行运动方程的可能性,都不是首要条件。这意味着时间箭头的方向可以在理论中唯一定义,甚至是局部定义。解释说,只有在具有描述的物理现象的模型的情况下,才能给出严格的时间定义以及因果关系和局部性概念的表述。唯一可行的因果条件是在时间反转下对称的条件。我们根据作者对量子力学的确定性元胞自动机解释(也称为“向量空间分析”)来解释这些陈述,并扩展这些思想。还总结了我们更严格的因果条件如何影响贝拉定理。量子系统与经典系统的区别在于,当根据某种理论模型研究现象时,我们根本无法控制初始状态的微观细节。

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