Explaining the large numbers by a hierarchy of 'Universes' - A unified theory of strong and gravitational interactions

Physics

Scientific paper

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Field Theory (Physics), Gravitation Theory, Hadrons, Relativistic Theory, Universe, Astronomical Models, Cosmology, Einstein Equations, Electromagnetic Fields, Equivalence, Force, Gravitational Fields, Hierarchies, Mach Inertia Principle, Quarks, Space-Time Functions

Scientific paper

An attempt is made to describe strong and gravitational interactions in a unified way by assuming covariance of physical laws under discrete dilations. It is possible to define a discrete hierarchy of universes which are governed by force fields with strengths inversely proportional to universe radii. Inside each universe an equivalence principle holds so that its characteristic field can be geometrized there. A whole 'numerology' can be derived, i.e., relations among numbers analogous to the so-called Weyl-Eddington-Dirac 'large numbers'. This 'numerology' connects the gravitational macrocosmos with the strong microcosmos, rather than with the electromagnetic cosmos, as in Dirac's version. The theory developed here is applied to black holes, quark confinement, and the big bang.

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