On Boolean posets of numerical events

Dietmar Dorninger, Helmut Länger
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Abstract

With many physical processes in which quantum mechanical phenomena can occur, it is essential to take into account a decision mechanism based on measurement data. This can be achieved by means of so-called numerical events, which are specified as follows: Let S be a set of states of a physical system and p(s) the probability of the occurrence of an event when the system is in state \(s\in S\). A function \(p:S\rightarrow [0,1]\) is called a numerical event or alternatively, an S-probability. If a set P of S-probabilities is ordered by the order of real functions, it becomes a poset which can be considered as a quantum logic. In case the logic P is a Boolean algebra, this will indicate that the underlying physical system is a classical one. The goal of this paper is to study sets of S-probabilities which are not far from being Boolean algebras by means of the addition and comparison of functions that occur in these sets. In particular, certain classes of so-called Boolean posets of S-probabilities are characterized and related to each other and descriptions based on sets of states are derived.

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关于数值事件的布尔偏序集
在许多可能发生量子力学现象的物理过程中,必须考虑基于测量数据的决策机制。这可以通过所谓的数值事件来实现,具体如下:设S是物理系统的一组状态,p(S)是系统处于状态\(S \ in S\)时事件发生的概率。函数\(p:S\rightarrow[0,1]\)称为数值事件,或者称为S概率。如果S-概率的集合P是按实函数的顺序排列的,它就成为了一个偏序集,可以被认为是一个量子逻辑。如果逻辑P是布尔代数,这将表明底层物理系统是经典物理系统。本文的目的是通过对这些集合中出现的函数的加法和比较,研究离布尔代数不远的S-概率集合。特别地,某些类别的所谓的S概率的布尔偏序集被表征并相互关联,并且导出了基于状态集的描述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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