Quantum Measurement without Ontology

Fuente: arXiv
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Main Author: Healey, Richard
Format: Preprint
Published: 2026
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author Healey, Richard
author_facet Healey, Richard
contents Measurement is an important scientific activity. In most of science, including classical physics, is may be understood as a way of finding out about the physical world and representing the results numerically. No-go theorems show that measurement of quantum observables is not like that: the recorded outcome is typically created rather than revealed in a quantum measurement, in which case there is no objective fact about the observable's prior value. Other no-go theorems show that unitary quantum theory can generally neither explain nor even represent a unique recorded outcome, thereby threatening that outcome's objectivity. Methodological norms inherent in quantum physical practice nevertheless institute the objectivity, not only of unique recorded outcomes of quantum measurements, but also of non-quantum features of the world that physicists and other scientists take their models to represent.
format Preprint
id arxiv_https___arxiv_org_abs_2605_16101
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Quantum Measurement without Ontology
Healey, Richard
Quantum Physics
History and Philosophy of Physics
Measurement is an important scientific activity. In most of science, including classical physics, is may be understood as a way of finding out about the physical world and representing the results numerically. No-go theorems show that measurement of quantum observables is not like that: the recorded outcome is typically created rather than revealed in a quantum measurement, in which case there is no objective fact about the observable's prior value. Other no-go theorems show that unitary quantum theory can generally neither explain nor even represent a unique recorded outcome, thereby threatening that outcome's objectivity. Methodological norms inherent in quantum physical practice nevertheless institute the objectivity, not only of unique recorded outcomes of quantum measurements, but also of non-quantum features of the world that physicists and other scientists take their models to represent.
title Quantum Measurement without Ontology
topic Quantum Physics
History and Philosophy of Physics
url https://arxiv.org/abs/2605.16101