Drummond Brian
Independent Researcher, Edinburgh, UK.
Entropy (Basel). 2022 Oct 26;24(11):1537. doi: 10.3390/e24111537.
Throughout quantum mechanics there is statistical balance, in the collective response of an ensemble of systems to differing measurement types. Statistical balance is a core feature of quantum mechanics, underlying quantum mechanical states, and not yet explained. The concept of "statistical balance" is here explored, comparing its meaning since 2019 with its original meaning in 2001. Statistical balance now refers to a feature of contexts in which: (a) there is a prescribed probability other than 0 or 1 for the collective response of an ensemble to one measurement type; and (b) the collective response of the same ensemble to another measurement type demonstrates that no well-defined value can be attributed, for the property relevant to the original measurement type, to individual members of the ensemble. In some unexplained way, the outcomes of single runs of a measurement of the original type "balance" each other to give an overall result in line with the prescribed probability. Unexplained statistical balance prompts caution in assessing the conceptual implications of entanglement, measurement, uncertainty, and two-slit and Bell-type analyses. Physicists have a responsibility to the wider population to be conceptually precise about quantum mechanics, and to make clear that many possible conceptual implications are uncertain.
在整个量子力学中,对于不同测量类型,系统集合的集体响应存在统计平衡。统计平衡是量子力学的一个核心特征,它是量子力学态的基础,但尚未得到解释。本文探讨了“统计平衡”的概念,将其自2019年以来的含义与其2001年的原始含义进行了比较。统计平衡现在指的是这样一种情境特征:(a)对于系统集合对一种测量类型的集体响应,存在一个非0或1的规定概率;(b)同一系统集合对另一种测量类型的集体响应表明,对于与原始测量类型相关的属性,不能将明确的值赋予集合中的单个成员。以某种无法解释的方式,原始类型测量的单次运行结果相互“平衡”,从而给出符合规定概率的总体结果。无法解释的统计平衡促使人们在评估纠缠、测量、不确定性以及双缝和贝尔型分析的概念含义时保持谨慎。物理学家有责任向更广泛的人群在量子力学概念上做到精确,并明确许多可能的概念含义是不确定的。