The non-singular Trautman–Kopczyński big-bang model and a torsional spinor description of dark matter

Abstract A view is taken up whereby the non-singular Trautman–Kopczyński big-bang creation of the Universe produced a highly torsional hot state at early stages of the cosmic evolution which particularly brought about the formation of a dark matter cloud. It is thus assumed that the combination of E...

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Main Author: J. G. Cardoso
Format: Article
Language:English
Published: SpringerOpen 2023-03-01
Series:European Physical Journal C: Particles and Fields
Online Access:https://doi.org/10.1140/epjc/s10052-023-11227-1
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author J. G. Cardoso
author_facet J. G. Cardoso
author_sort J. G. Cardoso
collection DOAJ
description Abstract A view is taken up whereby the non-singular Trautman–Kopczyński big-bang creation of the Universe produced a highly torsional hot state at early stages of the cosmic evolution which particularly brought about the formation of a dark matter cloud. It is thus assumed that the combination of Einstein–Cartan’s theory with the torsionful version of the two-component $$ \varepsilon $$ ε -formalism of Infeld and van der Waerden supplies a natural local description of dark matter in terms of uncharged spin-one massive fields. In the case of either handedness, the pertinent spinor field equation arises directly from a suitable form of the world Bianchi identity. It appears that each such field equation bears a term that is thought of as carrying part of the information on the mass of the fields. The whole information turns out to be extracted by well prescribed derivatives of certain couplings involving the fields and spinor torsion pieces in such a way that the mass of dark matter is really thought of as arising from the interaction between the fields and spinor torsion.
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spelling doaj.art-cd8fdcd2dfdc4abc96264700d18567e42023-04-30T11:25:27ZengSpringerOpenEuropean Physical Journal C: Particles and Fields1434-60522023-03-0183311210.1140/epjc/s10052-023-11227-1The non-singular Trautman–Kopczyński big-bang model and a torsional spinor description of dark matterJ. G. Cardoso0Department of Mathematics, Centre for Technological Sciences-UDESCAbstract A view is taken up whereby the non-singular Trautman–Kopczyński big-bang creation of the Universe produced a highly torsional hot state at early stages of the cosmic evolution which particularly brought about the formation of a dark matter cloud. It is thus assumed that the combination of Einstein–Cartan’s theory with the torsionful version of the two-component $$ \varepsilon $$ ε -formalism of Infeld and van der Waerden supplies a natural local description of dark matter in terms of uncharged spin-one massive fields. In the case of either handedness, the pertinent spinor field equation arises directly from a suitable form of the world Bianchi identity. It appears that each such field equation bears a term that is thought of as carrying part of the information on the mass of the fields. The whole information turns out to be extracted by well prescribed derivatives of certain couplings involving the fields and spinor torsion pieces in such a way that the mass of dark matter is really thought of as arising from the interaction between the fields and spinor torsion.https://doi.org/10.1140/epjc/s10052-023-11227-1
spellingShingle J. G. Cardoso
The non-singular Trautman–Kopczyński big-bang model and a torsional spinor description of dark matter
European Physical Journal C: Particles and Fields
title The non-singular Trautman–Kopczyński big-bang model and a torsional spinor description of dark matter
title_full The non-singular Trautman–Kopczyński big-bang model and a torsional spinor description of dark matter
title_fullStr The non-singular Trautman–Kopczyński big-bang model and a torsional spinor description of dark matter
title_full_unstemmed The non-singular Trautman–Kopczyński big-bang model and a torsional spinor description of dark matter
title_short The non-singular Trautman–Kopczyński big-bang model and a torsional spinor description of dark matter
title_sort non singular trautman kopczynski big bang model and a torsional spinor description of dark matter
url https://doi.org/10.1140/epjc/s10052-023-11227-1
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