The Standard Model and quantum state reduction from Heim's field theory.
Core parts of the Standard Model are derived from B. Heim's quantum field theory, whose poly-metric describes spacetime and matter in a unified formalism. Its non-linear eigenvalue equation transforms into the Einstein field equation in the macroscopic limit. The 6-dimensional Heim space can be dete...
| Publicado en: | Zeitschrift für Naturforschung Section A: A Journal of Physical Sciences Vol. 78; no. 6; pp. 481 - 498 |
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| Formato: | Artículo |
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De Gruyter
Jun2023
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| Acceso en línea: | Ver este registro en EBSCOhost |
| fields | @attributes: recordID: 1 pdfLink: plink: https://search.ebscohost.com/login.aspx?direct=true&db=hlh&AN=164010033&site=ehost-live header: @attributes: shortDbName: hlh uiTerm: 164010033 longDbName: Humanities International Complete uiTag: AN controlInfo: bkinfo: jinfo: jid: 09320784 FL07 jtl: Zeitschrift für Naturforschung Section A: A Journal of Physical Sciences issn: 09320784 maglogo: N pubinfo: dt: Jun2023 vid: 78 iid: 6 pid: 1734 pub: De Gruyter artinfo: ui: 164010033 10.1515/zna-2023-0023 ppf: 481 ppct: 17 formats: tig: atl: The Standard Model and quantum state reduction from Heim's field theory. aug: au: Warmann, Thomas affil: Sopra Steria SE, Hans-Henny-Jahnn-Weg 29, 22085 Hamburg, Germany su: Standard model (Nuclear physics) Quantum field theory Quantum states Einstein field equations Gauge symmetries Particles (Nuclear physics) Higgs bosons Gauge field theory sug: subj: Standard model (Nuclear physics) Quantum field theory Quantum states Einstein field equations Gauge symmetries Particles (Nuclear physics) Higgs bosons Gauge field theory keyword: general relativity particle masses quantum field theory quantum state reduction standard model ab: Core parts of the Standard Model are derived from B. Heim's quantum field theory, whose poly-metric describes spacetime and matter in a unified formalism. Its non-linear eigenvalue equation transforms into the Einstein field equation in the macroscopic limit. The 6-dimensional Heim space can be determined as locally isomorphic to a SU(2) ⊗ SU(2) ⊗ U(1) ⊗ U(1) symmetry and thus to the SU(3), which allows to connect to the local gauge symmetries and boson fields of the Standard Model. The Fermion and Higgs field and their coupling are deduced from Heim's basic equations, providing new insight into possible correlations of these fields. Furthermore, the derivation yields an additional imaginary coupling term which seems to account for quantum mechanical state reduction in the non-relativistic limit. The recently performed calculation of the mass spectrum of elementary particles in a new approach based on Heim's theory (with average error to the data < 1 % ) appears as even more relevant, having now shown that the theory can connect to the achievements of the Standard Model. pubtype: Academic Journal doctype: Article src: R language: English refInfo: copyright: @attributes: flag: Y dt: @attributes: year: 2023 holdings: @attributes: islocal: N |
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