sQFT: an autonomous explanation of the interactions of quantum particles

Fuente: arXiv
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Autori principali: Rehren, Karl-Henning, Cardoso, Lucas T., Gass, Christian, Gracia-Bondía, José M., Schroer, Bert, Várilly, Joseph C.
Natura: Preprint
Pubblicazione: 2024
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author Rehren, Karl-Henning
Cardoso, Lucas T.
Gass, Christian
Gracia-Bondía, José M.
Schroer, Bert
Várilly, Joseph C.
author_facet Rehren, Karl-Henning
Cardoso, Lucas T.
Gass, Christian
Gracia-Bondía, José M.
Schroer, Bert
Várilly, Joseph C.
contents Successful applications of a conceptually novel setup of Quantum Field Theory, that accounts for all subtheories of the Standard Model (QED, Electroweak Interaction and Higgs, Yang-Mills and QCD) and beyond (Helicity 2), call for a perspective view in a broader conceptual context. The setting is "autonomous" in the sense of being intrinsically quantum. Its principles are: Hilbert space, Poincaré symmetry and causality. Its free quantum fields are obtained from Wigner's unitary representations of the Poincaré group, with only physical and observable degrees of freedom. A "quantization" of an "underlying" classical theory is not needed. It allows renormalizable perturbation theory with interactions whose detailed structure, and in some cases even the particle content, is predicted by internal consistency. The results confirm and extend observable predictions for the interactions of the SM without assuming a "principle" of gauge invariance.
format Preprint
id arxiv_https___arxiv_org_abs_2405_09366
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle sQFT: an autonomous explanation of the interactions of quantum particles
Rehren, Karl-Henning
Cardoso, Lucas T.
Gass, Christian
Gracia-Bondía, José M.
Schroer, Bert
Várilly, Joseph C.
High Energy Physics - Theory
81-02, 81T15
Successful applications of a conceptually novel setup of Quantum Field Theory, that accounts for all subtheories of the Standard Model (QED, Electroweak Interaction and Higgs, Yang-Mills and QCD) and beyond (Helicity 2), call for a perspective view in a broader conceptual context. The setting is "autonomous" in the sense of being intrinsically quantum. Its principles are: Hilbert space, Poincaré symmetry and causality. Its free quantum fields are obtained from Wigner's unitary representations of the Poincaré group, with only physical and observable degrees of freedom. A "quantization" of an "underlying" classical theory is not needed. It allows renormalizable perturbation theory with interactions whose detailed structure, and in some cases even the particle content, is predicted by internal consistency. The results confirm and extend observable predictions for the interactions of the SM without assuming a "principle" of gauge invariance.
title sQFT: an autonomous explanation of the interactions of quantum particles
topic High Energy Physics - Theory
81-02, 81T15
url https://arxiv.org/abs/2405.09366