Mass in de Sitter and Anti-de Sitter Universes with Regard to Dark Matter

An explanation of the origin of dark matter is suggested in this work. The argument is based on symmetry considerations about the concept of mass. In Wigner’s view, the rest mass and the spin of a free elementary particle in flat space-time are the two invariants that characterize the associated uni...

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Main Author: Jean-Pierre Gazeau
Format: Article
Language:English
Published: MDPI AG 2020-05-01
Series:Universe
Subjects:
Online Access:https://www.mdpi.com/2218-1997/6/5/66
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spelling doaj-cf9cb093897b47a1afae5b752dd750f42020-11-25T03:29:39ZengMDPI AGUniverse2218-19972020-05-016666610.3390/universe6050066Mass in de Sitter and Anti-de Sitter Universes with Regard to Dark MatterJean-Pierre Gazeau0CNRS, Astroparticule et Cosmologie, Université de Paris, F-75013 Paris, FranceAn explanation of the origin of dark matter is suggested in this work. The argument is based on symmetry considerations about the concept of mass. In Wigner’s view, the rest mass and the spin of a free elementary particle in flat space-time are the two invariants that characterize the associated unitary irreducible representation of the Poincaré group. The Poincaré group has two and only two deformations with maximal symmetry. They describe respectively the de Sitter (dS) and anti-de Sitter (AdS) kinematic symmetries. Analogously to their shared flat space-time limit, two invariants, spin and energy scale for de Sitter and rest energy for anti-de Sitter, characterize the unitary irreducible representation associated with dS and AdS elementary systems, respectively. While the dS energy scale is a simple deformation of the Poincaré rest energy and so has a purely mass nature, AdS rest energy is the sum of a purely mass component and a kind of zero-point energy derived from the curvature. An analysis based on recent estimates on the chemical freeze-out temperature marking in Early Universe the phase transition quark–gluon plasma epoch to the hadron epoch supports the guess that dark matter energy might originate from an effective AdS curvature energy.https://www.mdpi.com/2218-1997/6/5/66de Sitteranti-de Sittergroup representationhadronizationdark matterzero-point energy
collection DOAJ
language English
format Article
sources DOAJ
author Jean-Pierre Gazeau
spellingShingle Jean-Pierre Gazeau
Mass in de Sitter and Anti-de Sitter Universes with Regard to Dark Matter
Universe
de Sitter
anti-de Sitter
group representation
hadronization
dark matter
zero-point energy
author_facet Jean-Pierre Gazeau
author_sort Jean-Pierre Gazeau
title Mass in de Sitter and Anti-de Sitter Universes with Regard to Dark Matter
title_short Mass in de Sitter and Anti-de Sitter Universes with Regard to Dark Matter
title_full Mass in de Sitter and Anti-de Sitter Universes with Regard to Dark Matter
title_fullStr Mass in de Sitter and Anti-de Sitter Universes with Regard to Dark Matter
title_full_unstemmed Mass in de Sitter and Anti-de Sitter Universes with Regard to Dark Matter
title_sort mass in de sitter and anti-de sitter universes with regard to dark matter
publisher MDPI AG
series Universe
issn 2218-1997
publishDate 2020-05-01
description An explanation of the origin of dark matter is suggested in this work. The argument is based on symmetry considerations about the concept of mass. In Wigner’s view, the rest mass and the spin of a free elementary particle in flat space-time are the two invariants that characterize the associated unitary irreducible representation of the Poincaré group. The Poincaré group has two and only two deformations with maximal symmetry. They describe respectively the de Sitter (dS) and anti-de Sitter (AdS) kinematic symmetries. Analogously to their shared flat space-time limit, two invariants, spin and energy scale for de Sitter and rest energy for anti-de Sitter, characterize the unitary irreducible representation associated with dS and AdS elementary systems, respectively. While the dS energy scale is a simple deformation of the Poincaré rest energy and so has a purely mass nature, AdS rest energy is the sum of a purely mass component and a kind of zero-point energy derived from the curvature. An analysis based on recent estimates on the chemical freeze-out temperature marking in Early Universe the phase transition quark–gluon plasma epoch to the hadron epoch supports the guess that dark matter energy might originate from an effective AdS curvature energy.
topic de Sitter
anti-de Sitter
group representation
hadronization
dark matter
zero-point energy
url https://www.mdpi.com/2218-1997/6/5/66
work_keys_str_mv AT jeanpierregazeau massindesitterandantidesitteruniverseswithregardtodarkmatter
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