Individuality and the Account of Nonlocality: The Case for the Particle Ontology in Quantum Physics

M. Esfeld
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引用次数: 8

Abstract

The paper explains why an ontology of permanent point particles that are individuated by their relative positions and that move on continuous trajectories as given by a deterministic law of motion constitutes the best solution to the measurement problem in both quantum mechanics and quantum field theory. This case is made by comparing the Bohmian theory to collapse theories such as the GRW matter density and the GRW flash theory. It is argued that the Bohmian theory makes the minimal changes, concerning only the dynamics and neither the ontology nor the account of probabilities, that are necessary to get from classical mechanics to quantum physics. There is no cogent reason to go beyond these minimal changes
个体性与非定域性的解释:以量子物理中的粒子本体为例
本文解释了为什么由由它们的相对位置和在由确定性运动定律给出的连续轨迹上运动的永久点粒子组成的本体论是量子力学和量子场论中测量问题的最佳解决方案。将波西米亚理论与GRW物质密度、GRW闪变理论等坍缩理论进行了比较。有人认为,波西米亚理论只涉及动力学,既不涉及本体论,也不涉及概率的描述,而这些变化是从经典力学过渡到量子物理学所必需的。没有令人信服的理由去做这些微小的改变
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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