Counting steps: a finitist approach to objective probability in physics

A. Hagar, G. Sergioli
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引用次数: 1

Abstract

We propose a new interpretation of objective probability in statistical physics based on physical computational complexity. This notion applies to a single physical system (be it an experimental set-up in the lab, or a subsystem of the universe), and quantifies (1) the difficulty to realize a physical state given another, (2) the ‘distance’ (in terms of physical resources) between a physical state and another, and (3) the size of the set of time-complexity functions that are compatible with the physical resources required to reach a physical state from another. This view (a) exorcises ‘ignorance’ from statistical physics, and (b) underlies a new interpretation to non-relativistic quantum mechanics.
计算步骤:物理学中客观概率的有限主义方法
我们提出了统计物理中基于物理计算复杂性的客观概率的新解释。这个概念适用于单个物理系统(无论是实验室中的实验装置,还是宇宙的子系统),并量化(1)实现给定另一个物理状态的难度,(2)物理状态与另一个物理状态之间的“距离”(就物理资源而言),以及(3)与从另一个物理状态达到物理状态所需的物理资源兼容的时间复杂度函数集的大小。这种观点(a)消除了统计物理学的“无知”,(b)奠定了对非相对论量子力学的新解释的基础。
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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来源期刊
Epistemologia
Epistemologia 社会科学-科学史与科学哲学
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