Theories Without Models: Uncontrolled Idealizations in Particle Physics

Fuente: arXiv
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Autori principali: Antoniou, Antonis, Thébault, Karim P. Y.
Natura: Preprint
Pubblicazione: 2023
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author Antoniou, Antonis
Thébault, Karim P. Y.
author_facet Antoniou, Antonis
Thébault, Karim P. Y.
contents The perturbative treatment of realistic quantum field theories, such as quantum electrodynamics, requires the use of mathematical idealizations in the approximation series for scattering amplitudes. Such mathematical idealisations are necessary to derive empirically relevant models from the theory. Mathematical idealizations can be either controlled or uncontrolled, depending on whether current scientific knowledge can explain whether the effects of the idealization are negligible or not. Drawing upon negative formal results in asymptotic analysis (failure of Borel summability) and renormalization group theory (failure of asymptotic safety), we argue that the mathematical idealizations applied in perturbative quantum electrodynamics should be understood as uncontrolled. This, in turn, leads to the problematic conclusion that such theories do not have theoretical models in the standard understanding of this term. The existence of unquestionable empirically successful theories without theoretical models has significant implications both for our understanding of the theory-model relationship in physics and the concept of empirical adequacy.
format Preprint
id arxiv_https___arxiv_org_abs_2312_08045
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Theories Without Models: Uncontrolled Idealizations in Particle Physics
Antoniou, Antonis
Thébault, Karim P. Y.
High Energy Physics - Phenomenology
High Energy Physics - Theory
History and Philosophy of Physics
The perturbative treatment of realistic quantum field theories, such as quantum electrodynamics, requires the use of mathematical idealizations in the approximation series for scattering amplitudes. Such mathematical idealisations are necessary to derive empirically relevant models from the theory. Mathematical idealizations can be either controlled or uncontrolled, depending on whether current scientific knowledge can explain whether the effects of the idealization are negligible or not. Drawing upon negative formal results in asymptotic analysis (failure of Borel summability) and renormalization group theory (failure of asymptotic safety), we argue that the mathematical idealizations applied in perturbative quantum electrodynamics should be understood as uncontrolled. This, in turn, leads to the problematic conclusion that such theories do not have theoretical models in the standard understanding of this term. The existence of unquestionable empirically successful theories without theoretical models has significant implications both for our understanding of the theory-model relationship in physics and the concept of empirical adequacy.
title Theories Without Models: Uncontrolled Idealizations in Particle Physics
topic High Energy Physics - Phenomenology
High Energy Physics - Theory
History and Philosophy of Physics
url https://arxiv.org/abs/2312.08045