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On the relation between quantum mechanical probabilities and event frequencies

机译:关于量子力学概率与事件频率之间的关系

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摘要

The probability 'measure' for measurements at two consecutive moments of time is non-additive. These probabilities, on the other hand, may be determined by the limit of relative frequency of measured events, which are by nature additive. We demonstrate that there are only two ways to resolve this problem. The first solution places emphasis on the precise use of the concept of conditional probability for successive measurements. The physically correct conditional probabilities define additive probabilities for two-time measurements. These probabilities depend explicitly on the resolution of the physical device and do not, therefore, correspond to a function of the associated projection operators. It follows that quantum theory distinguishes between physical events and propositions about events, the latter are not represented by projection operators and that the outcomes of two-time experiments cannot be described by quantum logic. The alternative explanation is rather radical: it is conceivable that the relative frequencies for two-time measurements do not converge, unless a particular consistency condition is satisfied. If this is true, a strong revision of the quantum mechanical formalism may prove necessary. We stress that it is possible to perform experiments that will distinguish the two alternatives. (C) 2004 Elsevier Inc. All rights reserved.
机译:在两个连续的时间进行测量的概率“测量”是非累加的。另一方面,这些概率可以由测量事件的相对频率的极限来确定,这些事件本质上是累加的。我们证明只有两种方法可以解决此问题。第一种解决方案着重于条件概率概念在连续测量中的精确使用。物理上正确的条件概率定义了两次测量的加法概率。这些概率明确取决于物理设备的分辨率,因此不对应于关联的投影算子的功能。因此,量子理论将物理事件和关于事件的命题区分开来,后者不由投影算符表示,并且两次实验的结果无法用量子逻辑描述。另一种解释是相当激进的:可以想象的是,除非满足特定的一致性条件,否则两次测量的相对频率不会收敛。如果这是真的,那么可能需要对量子力学形式主义进行强力修订。我们强调可以进行区分这两种选择的实验。 (C)2004 Elsevier Inc.保留所有权利。

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